Untitled record
Abstract
Provided herein are synergistic herbicidal compositions containing (a) a compound of formula (I): or an agriculturally acceptable salt or ester thereof and (b) microtubule inhibiting herbicide, e.g., dimethenamid, dithiopyr, oryzalin, pendimethalin, propyzamide, and thiazopyr, or derivative thereof. The methods and compositions provided herein provide control of undesirable vegetation, e.g., in direct-seeded, water-seeded and transplanted rice, cereals, wheat, barley, oats, rye, sorghum, corn or maize, sugarcane, sunflower, oilseed rape, canola, sugar beet, soybean, cotton, pineapple, pastures, grasslands, rangelands, fallowland, turf, tree and vine orchards, aquatics, plantation crops, vegetables, industrial vegetation management (IVM) and rights-of-way (ROW).
Term
No projected expiry on record.
- Priority
- Filed
- Published
- Today
19 claims: 19 independent, 0 dependent
- 1Protection elements عناصر الحماية 1- A synergistic herbicidal composition containing a herbicidally effective amount of (a) formula compound (I):1- تركيبة مبيد أعشاب تآزرية synergistic herbicidal composition تشتمل عمى كمية فعالة إلبادة األعشاب herbicidally effective من )أ( مركب الصيغة )I(: Or an alkyl or benzyl ester, or an agriculturally 5 acceptable salt according to the formula (I) and (B) a microtubule inhibiting herbicide, where the microtubule inhibiting herbicide is selected from the group formed. of dimethenamide, S-dimethenamide, and propyzamide, where (a) and (b) are present in the composition in such a ratio that the composition displays herbicidal synergy. أو ألكيل alkyl أو بنزيل آستر benzyl ester، أو ممح salt مقبول منو زراعيا agriculturally 5 acceptable وفقا لمصيغة )I( و)ب( مبيد عشبي مثبط لمقنيات الدقيقة microtubule inhibiting herbicide، حيث يتم انتقاء المبيد العشبي المثبط لمقنيات الدقيقة microtubule inhibiting herbicide من المجموعة المتكونة من دايميثين أميد dimethenamid، وS-دايميثين أميد -S dimethenamid، وبروبيزاميد propyzamide، حيث يوجد )أ( و)ب( في التركيبة composition في نسبة بحيث تعرض التركيبة composition تآزر عشبي .herbicidal synergy 10 10
- 2The composition according to Protection No. 1, where (a) is 4-C1 alkyl or benzyl ester of compound (I). 2. التركيبة وفقاً لعنصر الحماية رقم 1، حيث تكون )أ( 4-C1 ألكيل alkyl أو بنزيل استر benzyl ester لممركب I( compound(.
- 3The composition according to Protection No. 1, where (a) is a C1-4 alkyl ester 3. التركيبة composition وفقاً لعنصر الحماية رقم 1، حيث يكون )أ( 4-C1 ألكيل آستر alkyl 15 ester of compound I(. 15 ester لممركب I( compound(.
- 4The composition is according to Protection No. 1, where (a) is the benzyl ester of a compound 4. التركيبة وفقاً لعنصر الحماية رقم 1، حيث يكون )أ( بنزيل آستر benzyl ester لممركب (I) compound .)I( compound
- 520 5. The composition according to Protection No. 1, where (A) is a compound of formula (I), which is 20 5. التركيبة composition وفقاً لعنصر الحماية رقم 1، حيث يكون )أ( مركب لمصيغة )I( التي تعد Carboxylic acid. حمض كربوكسيمي carboxylic acid.
- 6The composition according to protection element No. 1, which includes at least one compound selected from the group of herbicide safeners, 6. التركيبة composition وفقا لعنصر الحماية رقم 1، حيث تتضمن مركب compound واحد عمى األقل تم انتقاؤه من المجموعة المتكونة من مؤمنات المبيدات الحشرية herbicide safeners، 25 Adjuvants and pharmaceutically accepted carriers. 25 عوامل اإلضافة adjuvants، والحوامل carriers المقبولة صيدليا. ٤٦١٥ ٤٦١٥ -٨٨- -٨٨-
- 7A method to control unwanted vegetation growth, which includes the following steps:7. طريقة method لمتحكم في النمو الخضري vegetation الغير مرغوب والتي تشتمل عمى الخطوات التالية: Touch a plant, as the plant is an unwanted vegetation or locus, تالمس نبات plant، حيث يعد النبات نمو خضري vegetation غير مرغوب أو بقعة locus منو، 5 Soil or water, where the soil or water supports the growth of vegetation in an amount effective for destruction 5 تربة أو ماء، حيث تدعم التربة أو الماء نمو النمو الخضري vegetation في كمية فعالة إلبادة compound includes (a) a combination of herbicidally effective herbs compound يتضمن )أ( مركب combination من توليفة herbicidally effective األعشاب Formula (I): الصيغة )I(: Or an alkyl or benzyl ester, or an agriculturally acceptable 10 acceptable salt according to the formula (I) and (B) a microtubule inhibiting herbicide, where the microtubule inhibiting herbicide is selected from the group formed. of dimethenamide, S-dimethenamide, and propyzamide, where (a) and (b) are present in the composition in such a ratio that the composition displays herbicidal synergy. أو ألكيل alkyl أو بنزيل آستر benzyl ester، أو ممح salt مقبول منو زراعيا agriculturally 10 acceptable وفقا لمصيغة )I( و)ب( مبيد عشبي مثبط لمقنيات الدقيقة microtubule inhibiting herbicide، حيث يتم انتقاء المبيد العشبي المثبط لمقنيات الدقيقة microtubule inhibiting herbicide من المجموعة المتكونة من دايميثين أميد dimethenamid، وS-دايميثين أميد -S dimethenamid، وبروبيزاميد propyzamide، حيث يوجد )أ( و)ب( في التركيبة composition في نسبة بحيث تعرض التركيبة composition تآزر عشبي .herbicidal synergy 15 15
- 8The method is in accordance with protection element 7, where unwanted vegetation is controlled in direct-seeded, water-seeded, transplanted rice, cereals, wheat, barley, oats, rye, and sorghum. sorghum, corn/maize, sugarcane, sunflower 8. الطريقة method وفقا لعنصر الحماية 7، حيث يتم التحكم في النمو الخضري vegetation الغير مرغوب في البذر المباشر direct-seeded، البذور المائية water-seeded واألرز المزروع transplanted rice، الحبوب cereals، القمح wheat، الشعير barley، الشوفان oats، الجاودار rye، والذرة الرفيعة sorghum، الذرة أو الذرة corn/maize، قصب السكر sugarcane، عباد 20 sunflower, oilseed rape, canola, sugar beet, soybean, cotton, pineapple, pastures, grasslands, fallowland, rangelands, turf, trees and shrubs, vine orchards, aquatics, crop plantings, Vegetables, industrial vegetation management or rights of way 20 الشمس sunflower، الحبوب الزيتية oilseed rape، الكانوال canola، بنجر السكر sugar beet، فول الصويا soybean، القطن، األناناس pineapple، والمراعي pastures واألراضي العشبية grasslands والمراعي fallowland ،rangelands، العشب turf، االشجار والشجيرات vine orchards، النباتات المائية aquatics، مزروعات المحاصيل، الخضروات، التحكم الخضري الصناعي industrial vegetation management أو التحكم الطريقي .rights of way 25 25
- 9The method is in accordance with Protection Clause No. 7, where (A) and (B) are used on water. 9. الطريقة فقاً لعنصر الحماية رقم 7، حيث يتم استعمال )أ( و)ب( عمى الماء. ٤٦١٥ ٤٦١٥ -٨٩- -٨٩-
- 10The method is in accordance with Protection Clause No. 9, where water is part of the flooded rice paddy. 10. الطريقة method وفقا لعنصر الحماية رقم 9، حيث يكون الماء جزءا من شتالت األرز المغمورة flooded rice paddy.
- 115 11. The method according to protection item No. 7, where (a) and (b) are used before -pre appears 5 11. الطريقة method وفقاً لعنصر الحماية رقم 7، حيث يتم استعمال )أ( و)ب( قبل ظيور -pre emergently weed or crop. emergently األعشاب weed أو المحاصيل crop.
- 12The method is in accordance with Protection Clause No. 7, where (a) and (b) are used after the pre-emergence of weeds or crops. 12. الطريقة method وفقاً لعنصر الحماية رقم 7، حيث يتم استعمال )أ( و)ب( بعد ظيور -pre emergently األعشاب weed أو المحاصيل crop. 10 10
- 13The method is according to Protection Element No. 7, where unwanted vegetative growth in crops resistant to 5 is controlled - glyphosate inhibitor - enol 13. الطريقة method وفقا لعنصر الحماية رقم 7، حيث فييا يتم التحكم في النمو الخضري vegetation الغير مرغوب في المحاصيل المقاومة لـ5 ،- glyphosateمثبط inhibitor - اينول Enolpyruvylshikimate-3-phosphate Synthase (EPSP) Pyruvylshikimate-3-phosphate سينثاز )EPSP( enolpyruvylshikimate-3-phosphate بيروفيل شيكيمات -3- فوسفات glufosinate ،-synthase-، مثبط الجموتامين سينثاز glufosinate-, glutamine glufosinate, -synthase-, glutamine synthase inhibitor glufosinate-, glutamine 15 dicamba, synthetase inhibitor, phenoxy auxin, pyridyloxy auxin, synthetic auxin, auxin transport inhibitor, aryloxyphenoxypropionate, cyclohexanedione, phenylpyrazoline, acetyl-CoA carboxylate inhibitor )acetyl CoA carboxylase (ACCase) inhibitor )ACCase -, imidazolinone 15 dicamba ،- synthetase inhibitor-، فينوكسي اوكسين phenoxy auxin، بيريدوكسيل اوكسين pyridyloxy auxin، األوكسين الصناعي synthetic auxin، مثبط نقل األوكسين auxin transport inhibitor، أريموكسي فينوكسي بروبيونات aryloxyphenoxypropionate، ىكسان ديون حمقي cyclohexanedione، فينيل بيرازولين phenylpyrazoline، مثبط اسيتيلCoA كربوكسيالز )acetyl CoA carboxylase (ACCase) inhibitor )ACCase -، ايميدازولينون 20 imidazolinone, sulfonylurea, pyrimidinylthiobenzoate, triazolopyrimidine, sulfonylaminocarbonyltriazolinone, acetolactate synthase (ALS) or ACE inhibitors tohydroxy acid synthase inhibitor 4 - hydroxyphenylpyruvate 20 imidazolinone، سمفونيل يوريا sulfonylurea، بيريميدينيل ثيو بنزوات pyrimidinylthiobenzoate، ثالثي ازولو بيريميدين triazolopyrimidine، سمفونيل أمينو كربونيل ثالثي ازولينون sulfonylaminocarbonyltriazolinone، اسيتوالكتات سينثاز ALS( acetolactate synthase( أو مثبطات inhibitors حمض اسيتوىيدروكسي سينثاز AHAS) acetohydroxy acid synthase)، مثبط 4 inhibitor- ىيدروكسي فينيل بيروفات 25 4-hydroxyphenyl-pyruvate dioxygenase (HPPD), inhibitor 25 ثنائي أوكسجيناز HPPD( 4-hydroxyphenyl-pyruvate dioxygenase( -، مثبط phytoene desaturase inhibitor ، مثبط التصنيع الحيوي لمكاروتينويدات carotenoid biosynthesis inhibitor، مثبط inhibitor أوكسيداز البروتوبورفرينوجين protoporphyrinogen PPO) oxidase) -، مثبط التصنيع الحيوي لمسيميموز ،cellulose biosynthesis inhibitor مثبطات األنقسام الميتوزي mitosis inhibitor، مثبط الميكروتيوبيول ،microtubule inhibitor phytoene desaturase inhibitor, carotenoid biosynthesis inhibitor, protoporphyrinogen oxidase inhibitor (PPO), cellulose biosynthesis inhibitor, mitosis inhibitor, microtubule inhibitor 30 Inhibitor of very long chain fatty acids, inhibitor of fatty acids and lipids, inhibitors of photosynthesis I - 30 مثبط inhibitor األحماض الدىنية طويمة السمسمة very long chain fatty acid، مثبطات inhibitor األحماض الدىنية fatty acid والدىون lipid، مثبطات البناء الضوئيI - ٤٦١٥ ٤٦١٥ -٩٠- -٩٠- photosystem I inhibitor, photosystem II inhibitor - II, triazine, or bromoxynil-resistant crops. photosystem I inhibitor، مثبطات البناء الضوئيphotosystem II inhibitor - II، ترايزين triazine، أو المحاصيل المقاومة لبروموكسينيل .bromoxynil- tolerant crops
- 14The method is in accordance with Protection Clause No. 13, as the tolerant crop possesses resistant characteristics 14. الطريقة وفقا لعنصر الحماية رقم 13، حيث يمتمك المحصول المقاوم tolerant crop صفات 5 Multiple or combined traits that are resistant to multiple herbicides or multiple modes of action. 5 traits متعددة أو مركبة تقاوم مبيدات االعشاب herbicides المتعددة أو نظم العمل modes of action المتعددة.
- 15The method is in accordance with protection element No. 7, where undesirable vegetation includes resistance to herbicides or tolerance to tolerant weeds. 15. الطريقة method وفقا لعنصر الحماية رقم 7، حيث يشتمل النمو الخضري vegetation الغير مرغوب يشتمل عمى مقاومة مبيدات أعشاب herbicide resistant أو تحمل اعشاب tolerant .weed 10 .weed 10
- 16The method is in accordance with Protection Clause No. 15, where the tolerant weed crop is a biotype with resistance or tolerance to multiple herbicides, multiple chemical classes, or modes of action. 16. الطريقة وفقا لعنصر الحماية رقم 15، حيث يكون المحصول المقاوم tolerant weed نوع حيوي biotype بمقاومة resistance أو سماحية tolerance لممبيدات العشبية المتعددة multiple herbicides، وأصناف كيماوية متعددة multiple chemical classes، أو نظم العمل -modes 15 of-action of multiple pesticides or by multiple resistance mechanisms 15 of-action لممبيد المتعدد أو بواسطة آليات مقاومة متعددة multiple resistance .mechanisms .mechanisms
- 17The method is according to protection element No. 15, where the crop is resistant or tolerant 17. الطريقة method وفقاً لعنصر الحماية رقم 15، حيث يكون المحصول المقاوم أو المتحمل Aceto inhibitors are resistant or tolerant to biotype inhibitors. Resistant or tolerant weed أسيتو inhibitors مقاوم أو متحمل لمثبطات biotype نوع حيوي resistant or tolerant weed 20 Acetolactate synthase or acetohydroxy acid synthase, photosystem II inhibitors, acetyl CoA carboxylase inhibitors, synthetic auxins, auxin transport inhibitors, photosystem II inhibitors, and auxin transport inhibitors. 5 inhibitors-enol pyruvyl shikimate-3-phosphate synthase-5 20 الكتات سينثاز acetolactate synthase أو حمض اسيتو ىيدروكسي سينثاز acetohydroxy acid synthase، مثبطات النظام الضوئي photosystem II inhibitors II، مثبطات inhibitors اسيتل CoA كربوكسيالز acetyl CoA carboxylase، األوكسينات المخمقة ،synthetic auxins ومثبطات inhibitors نقل األوكسين auxin transport، مثبطات النظام الضوئي photosystem I I inhibitors، ومثبطات 5 inhibitors-إينول بيروفيل شيكيمات-3-فوسفات سينثاز -5 25 enolpyruvylshikimate-3-phosphate synthase, microtubule assembly inhibitors, fatty acid and lip synthesis inhibitors, protoporphyrinogen oxidase inhibitors, carotenoid biosynthesis inhibitors, and very long-chain fatty acid inhibitors long chain 25 enolpyruvylshikimate-3-phosphate synthase، ومثبطات تجميعة القنيات الدقيقة microtubule assembly inhibitors، ومثبطات inhibitors تخميق synthesis الحمض الدىني fatty acid والشحم lipid، ومثبطات inhibitors بوتوبورفيرنوجين أوكسيداز protoporphyrinogen oxidase، ومثبطات inhibitors التخميق الحيوي كاروتينويد carotenoid biosynthesis، ومثبطات inhibitors الحمض الدىني طويل السمسمة جدا very long chain 30 fatty acid, phytoene desaturase inhibitors, glutamine synthetase inhibitors, and 4-hydroxy-pyruvate-deoxygenase-4. 30 fatty acid، ومثبطات فايتوين ديساتورايز phytoene desaturase، ومثبطات inhibitors جموتامين سينثاز glutamine synthetase، و4-ىيدروكسي-بيروفات-دي أوكسيجناز -4 ٤٦١٥ ٤٦١٥ -٩١- -٩١- hydroxyphenyl-pyruvate-dioxygenase, and mitosis inhibitors hydroxyphenyl-pyruvate-dioxygenase، ومثبطات االنشطار الثنائي mitosis inhibitors, cellulose biosynthesis inhibitors, herbicides with multiple modes of action, quinclorac, arylaminopropionic acids, and difenzocoate inhibitors، ومثبطات التخميق الحيوي biosynthesis لمسميموز cellulose، والمبيدات الحشرية herbicides مع العديد من طرق العمل multiple modes-of-action، وكوينوالرك quinclorac، وأحماض آريال أمينو بروبيونيك arylaminopropionic acids، وديفينزوكوات 5 difenzoquat, endothall, or organoarsenicals. 5 difenzoquat، وايندوثال endothall، أو مواد الخارصين العضوية .organoarsenicals
- 18The composition according to protection element No. 1, where the microtubule inhibiting herbicide is propyzamide. 18. التركيبة composition وفقا لعنصر الحماية رقم 1، حيث يكون المبيد الحشري المثبط لمقنيات الدقيقة microtubule inhibiting herbicide ىو بروبيزاميد propyzamide.
- 1910 19. The method in accordance with Protection No. 7, wherein the insecticide is a microbial inhibitor 10 19. الطريقـــــة وفقـــــا لعنصـــــر الحمايـــــة رقـــــم 7، حيـــــث يكـــــون المبيـــــد الحشـــــري المثـــــبط لمقنيـــــات الدقيقـــــة Propyzamide is a microtubule inhibiting herbicide propyzamide ىو بروبي ازميد microtubule inhibiting herbicide ٤٦١٥ ٤٦١٥
Independent claims19
974 paragraphs in 8 sections, as filed
Full description
The secret of the invention
The current application is a partial application from application No. 553343754.
Weeds and other unwanted plants inhibit crop growth and represent a recurring problem in agricultural operations. To help reduce the growth of unwanted plants, a variety of chemical compounds and chemical formulations have been developed for use before the plants appear. However, there is still a need to formulate herbicidal formulations from compounds that exhibit herbicidal synergy in order to increase the control of unwanted plants or reduce the growth.
6-(Balcoholic) Compounds 7354849 پ پلِعْ بِأَخَوَه
6-(poly-substituted aryl)-4-aminopicolinates (substituted) -4-aminopicolinates
And their sustainability as herbicides.
US Instrument No. 7622645 describes 55 methods and compositions for providing tolerance to multiple herbicides.
.herbicides
٤٦١٥
-٣-
US Attorney's Bulletin No. 5 3537537-2353 for Rosinger and Wonderf describes herbicide/herbicide safe combinations.
US Federal Reserve Bulletin No. 5 3555727-2352 by Lassachevy Wonder describes the control of weeds resistant to phenoxyalkanoic acid using 45-amino-3-chamoro-6-(4-chamoro-2-phemocho-3-methoxy) acid. Phenyl (Pyridine) - 2-Carboxylamine
4-amino-3-chloro-6-(4-chloro-2-fluoro-3-methoxyphenyl)pyridine-2-
Carboxylic acid and its salts or esters.
A circular from the American National Institutes of Defense, No. A5 3539569-2353, by David Wondoff describes stable pesticidal compositions.
53 Description of a leaflet in the United States Department of Agriculture, No. A5 3593555-2352, for the use of arylalkyl esters from 4-amino-6-(phenyl b) compounds (replacement) - Picolinate compounds
4 And 6-amino-2-(phenyl bh-amino-6-(substituted phenyl)-picolinates.
6-amino-2-substituted (substituted)-pyrimidine carboxylate and its use as herbicides
.phenyl)-pyrimidine carboxylates
55 The device describes the installation of multi-functional synergies Herbicide/fungicide is a general class of herbicides and fungicides.
A leaflet from the American Medical Center, No. A5 3382562-2355, describes synergistic fungicide formulations containing 5-fluorocytos ine in order to control 23 fungi in cereal crops.
A US Federal Reserve Bulletin A5 3362525-2339 by Wenddorf describes synergistic herbicidal formulations containing specific pyridine or pyrimidine carboxylic acids and specific herbicides for crops The most expensive grains, rice.
٤٦١٥
-٤-
Eliminate the need for synergistic herbicidal compositions and methods of their use. It is necessary for the family to control and prune unwanted plants.
Here we describe the herbicidal compositions containing (a) 5-acid, 4-amino-3-2-chalamuro-5-chalamhoro-6- (4-chalamhoro-2-chalamhoro-2). 3- Methoxyphenyl (pyridine-2-carboxyme or ester) Or some of it is agriculturally acceptable
ester or salt and (b) a microtubule inhibiting herbicide. Methods for controlling unwanted plants are also described here, including the application of (a) 4-amino-3-chouro-5-fumoro-6- (4-chomoro-acid). 2-Fumuro-3-methoxyphenyl (pyridine -
53 2- An agriculturally acceptable carboxysome, ester or derivative thereof, and (b) a microtubule-inhibiting herbicide.
General description of the invention
Provided here is a herbicide formulation that includes (a) 4-amino-3- chloro-5- fluoro-6- (4- cholo-2- fluoro-3- methoxyphenyl) pyridine-2- carboxylic acid - 4-5-amino. -3-chloro
fluoro-6-(4-chloro-2-fluoro-3-methoxyphenyl)pyridine-2-carboxylic acid
55 or an agriculturally acceptable ester or a salt thereof, and (b) a microtubule inhibiting herbicide. Also provided here are methods for controlling undesirable vegetation, which include (a) 4-amino-3-chumro-5- Pyridine-2-(4-chouro-2-phamro-3-methoxyphenyl)pyridine-2 is an agriculturally acceptable carboxylic acid or ester or salt thereof and (b) a herbicide that inhibits microflora.
23 Protecting crops from weeds and vegetation. Rotation, which inhibits crop growth, is a recurring problem in agriculture. To help overcome this problem, researchers in the field of synthetic chemistry have produced new chemicals and chemical formulations that are effective in controlling unwanted growth. Explains the chemical herbicides
٤٦١٥
-٥-
Various types are commercially available. Despite this, there remains a need to discover a more efficient way to control unwanted urban growth.
It provides a formulation of herbicidal compositions that includes a formulation of a pesticide.
(I) Formula compound of (A) herbicidally effective herbal compound
<img file="SA4615B1_D0001.tif" />
or an agriculturally acceptable salt or ester, and (b) an agriculturally acceptable herbicide that inhibits microbes. Compositions may also include a carrier or an agriculturally acceptable adjuvant.
There are also methods for controlling unwanted growth, which include (a) a formula compound (I) or an agriculturally acceptable ester or deleted from it, and (b) a herbicide that inhibits microflora.
Various patterns are described with honey. In model C, the ratio of compound (A) to compound (B) can be expressed in units of weight for the balance (C to C) ha /gae to ha /gae or ha /gae to ha/gai.
5. A composition of a synergistic herbal herbicide consisting of a compound based on a herbal supplement (a) compound پب
55 Formula (I)
٤٦١٥
-٦-
<img file="SA4615B1_D0002.tif" />
Or an agriculturally acceptable salt or ester, and (b) a herbicide that inhibits microflora.
<p dir="rtl">2. Growth structure C5, where (a) it is 4-5C of an alkyl or benzyl ester</p>
ester from the compound (I).
<p dir="rtl">5 3. Growth structure, Part 2, where (A) is a benzyl ester of compound (I).</p>
<p dir="rtl">4. Growth formula C5, in which (a) the compound of formula (I) is a carboxymic acid.</p>
.carboxylic acid
<p dir="rtl">5. Composition of any package in Vietnam C 5-4 Where it is used (b) Cost of S-dimethenamide</p>
or propyzamide pendimethalin oryzalin dithiopyr dimethenamid .thiazopyr 53
<p dir="rtl">6. Growth formula C5, wherein (a) the formula compound (I) or an agriculturally acceptable benzyl ester is</p>
and (b) form dimethenamide or S-dimethenamide.
<p dir="rtl">7. Growth formula C5, wherein (a) the formula compound (I) or an agriculturally acceptable benzyl ester is</p>
and (b) dithiopyr tkof.
55 8. Growth formula C5, wherein (a) the formula compound (I) or an agriculturally acceptable benzyl ester is
and (b) oryzalin formation.
<p dir="rtl">9. Growth formula C5, wherein (a) the formula compound (I) or an agriculturally acceptable benzyl ester is</p>
and (b) pendimethalin formation.
٤٦١٥
-٧-
<p dir="rtl">53. Growth formula C5, wherein (a) the formula compound (I) or an agriculturally acceptable benzyl ester is</p>
and (b) propyzamide formation.
<p dir="rtl">55. Growth formula C5, wherein (a) the formula compound (I) or an agriculturally acceptable benzyl ester is</p>
and (b) thiazopyr.
<p dir="rtl">5 52. A composition of any of the schemes C 5-55 which additionally includes a herbicide ingredient.</p>
<p dir="rtl">53. Growth formula C5, where the weight ratio of the formula compound (I) or an agriculturally acceptable salt or ester thereof to dithiopyr or an agriculturally acceptable salt or ester thereof is from about 3363:5 to about 5:5 or from about 5:433 to about 5:533. Or from about 5:233 to about 5:53 or from about 5:533 to about 5:35 or from about 5:5 or from about 5:2 or from about 5:</p>
53 4 or wrapped around 5:8 or wrapped around 5:56 or wrapped around 5:32 to about 5:5 or wrapped
About 5:64 to 5:5.
<p dir="rtl">54. Growth composition C5, wherein the weight ratio of the formula compound (I) or an agriculturally acceptable salt or an ester thereof to dimethenamide or S-dimethenamide or an agriculturally acceptable salt thereof is from about 823:5 to about 5:3 or from about 5:433 to about 2.5:5 millennium is about 5:333 millennium to</p>
55 About 2:5 mv about 5:233 to about 5.5:5 and about 5:533 mv to about 5:5.
<p dir="rtl">55. Growth formula C5, where the weight ratio of the formula compound (I) or an agriculturally acceptable salt or ester thereof to oryzalin or an agriculturally acceptable salt or ester thereof is from about 5523:5 to about 5:9 or from about 5:633 to about 7: 5 Or from about 5:533 to about 6:5 Or from about 5:433 to about 5:5 Or from about 333:5 to about 4.5 Or from about 233:5 to 23 About 5:3 From about 9: 5 ml about 56:5 ml about 35:5 ml about 64:5 ml or about 5:5 ml</p>
About 256:5 to about 9:5.
<p dir="rtl">56. Growth formula C5, where the weight ratio of the formula compound (I) or an agriculturally acceptable salt or ester thereof to pendimethalin or an agriculturally acceptable salt or ester thereof is about 5523:5 to about 5:3 of about 5333:5 to 5:2 of about 753 :5 to about 5:5.5 mv about 533:5</p>
٤٦١٥
-٨-
To about 5:5 ml, to about 5:4 ml, to about 5:8 ml, to about 56:5 ml, to about 5:32 ml, to about 5:64 ml, to about 5:528 ml, and from about 5:448 to 5:2.
<p dir="rtl">57. Growth formula C5, where the weight ratio of the formula compound (I), or an agriculturally acceptable salt or ester thereof, to propyzamide, or an agriculturally acceptable salt or ester thereof, is from about 633:5 to about</p>
5 5:4 mm from about 533:5 to about 5:3 mm from about 433:5 to about 5:2 mm from about
333:5 to about 5:5 m from about 9:5 m from about 58:5 m from about 32:5 m from about 64:5 m from about 528:5 and from about 543:5 to about 2.2:5
<p dir="rtl">58. Growth formula C5, where the weight ratio of the formula compound (I) or an agriculturally acceptable salt or an ester thereof to thiazopyr or an agriculturally acceptable salt thereof is from about 5523:5 to about 5:6 or</p>
53 From about 5:333 to about 5:5 Ma From about 533:5 to about 4.5 Ma From about 5:433 to about 5:3 Ma From about 433:5 to about 5:2 Ma From about 233:5 to about 5:5 Ma from 9 :5 Mv 58:5 Mn about 36:5 Mn about 72:5 and Mn about 53:5 to about 32:5.
<p dir="rtl">59. The composition of any of the schemes C5-58 additionally includes a carrier or an agriculturally acceptable additive.</p>
<p dir="rtl">23. The composition of any of the Figures 5-58, whose synergy follows the Colby equation.</p>
<p dir="rtl">55 25. A method for controlling unwanted physical growth, which includes touching the growth.</p>
Or its locus spots or spread on the soil or passers-by to prevent emergence or urban growth. Formula of any of the plants, Part 5-23.
<p dir="rtl">22. A method of controlling unwanted tree growth, which includes contacting the tree growth, cutting off its roots, or working on soil or soil to prevent the appearance of tree tree growth A language with a language</p>
23 Herbs of (A) compound formula (I)
٤٦١٥
-٩-
<img file="SA4615B1_D0003.tif" />
Or an agriculturally acceptable salt or ester, and (b) a herbicide that inhibits microflora.
<p dir="rtl">23. Growth method, Part 25 or 22, where the method is practiced on one of the cuttings of a group consisting of direct-seeded water-seeded seeds and the most prominent cultivated plants.</p>
oats barley barley wheat wheat cereals transplanted rice 5
rye rye and rye rye, rye rye, rye rye, rye rye, maize cut GFGFCFGB
canola oilseed rape sunflower sunflower sugarcane
sugar beet sugar beet soybean cotton pineapple pineapple pasture
fallowland rangelands, grasslands, and pastures
53 turf, vine orchards, aquatics, crop crops, plantation crops, artificial vegetation management (IVM) and rights-of-way (ROW).
<p dir="rtl">24. Growth method C 25 or 22, where unwanted, immature growth occurs.</p>
<p dir="rtl">25. Growth method c. 25 or 22, where (a) and (b) are inserted into the pass.</p>
55 26. Growth method, Part 25, in which there are islands of flooded rice paddy.
<p dir="rtl">27. Growing method C 25 or 22 in which (a) and (b) are grown before the emergence of weeds or crops pre-emergently.</p>
<p dir="rtl">28. The manner in which (a) and (b) are to be conducted shall appear - post</p>
emergently weeds or crops.
٤٦١٥
-١٠-
<p dir="rtl">29. Growth method C 25 or 22, in which undesirable growth is controlled using the glyphosate compound 5-glyphosate-enolpyruphyl formula. Glychemate-3- Phosphosulfate-5</p>
inhibitor -glufosinate - (EPSP) enolpyruvylshikimate-3-phosphate phenoxy -dicamba -glutamine synthetase synthetic auxin -pyridyloxy auxin pyridyloxy auxin -auxin 5
Such as: auxin transport - arimoxoxyphenoxychloroquinone aryloxyphenoxypropionate- cyclohexanedione- phenyl
acetyl CoA (ACCase) acetyl CoA inhibitor -phenylpyrazoline -imidazolinone -carboxylase (ACCase) inhibitor
<p dir="rtl">53 SULFONYLUREA- The Pyremidinylthiobenzoate- Third Dimithoxy-themidine, the Dimithoxy-Pyrimidine, Skh The third of the third is the third of the third year</p>
acetolactate synthase -sulfonylaminocarbonyltriazolinone
ALS or an acetohydroxy acid synthase inhibitor (AHAS).
55 4-hydroxyphenyl-pyruvate dioxygenase inhibitor
Biosynthesis inhibitor - phytoene desaturase inhibitor - (HPPD) dioxygenase
Carotenoid biosynthesis
Cellulose is a protoporphyrinogen oxidase (PPO) biosynthesis inhibitor
biosynthesis - mitosis inhibitors - microtubule inhibitors
23 Very long chain fatty acid inhibitor - Inhibitors of fatty acids and lipids - Inhibitors of photosystem I - Inhibitors of photosynthesis II - triazine - or crops resistant to bromoxynil -
.tolerant crops
<p dir="rtl">33. Growth method, Part 29, in which resistant crops possess variable or combined traits. 25 Resistant to variable herbicides or modes of action.</p>
٤٦١٥
-١١-
<p dir="rtl">35. Growth method C. 25 or 22, in which undesirable vegetative growth involves resistance</p>
Herbicide resistant or tolerant to tolerant weed.
<p dir="rtl">32. Growing method 25 or 22, where the resistant herbs are of a biotype</p>
Resistance or tolerance to various chemical classes of herbicides or pesticides D From resistance mechanisms.
<p dir="rtl">33. Growing method C35, where the resistant or tolerant herbs are tolerant or tolerant to ALS or inhibitors of ALS AHAS (AHAS) Inhibitors of photosynthesis II Oxygenyl CoA sulfate (ACCase) inhibitors</p>
<p dir="rtl">53 Synthetic auxin transport inhibitor, photosynthesis inhibitors I, 5-enol pyruvate-3-phosphate synthase inhibitors (EPSP), microtubule aggregation inhibitors, cell synthesis inhibitors Fatty and fatty acids Protoporphyrin oxidase inhibitor (PPO) Biosynthesis inhibitor of carotenoids Fatty toxoid acidosis inhibitors (VLCFA) Phytoene desaturase inhibitors Gammasynthase inhibitor (PDS) 4-hydroxyphenyl-pyruvate dioxygenase inhibitors</p>
<p dir="rtl">55 (HPPD) mitosis inhibitors, methylcellulose biosynthesis inhibitor, herbicides, quinclorac, arylaminopropionic endothall difenzoquat acids or Aldar summer organoarsenicals.</p>
<p dir="rtl">34. The composition of any form of formula C 5-5, where the ratio by weight of the formula compound (I), an agriculturally acceptable salt or an ester thereof, to dithiopyr, or an agriculturally acceptable salt or ester thereof, is approximately 3363:5 to</p>
23 About 5:5.
<p dir="rtl">35. The composition of any formula C 5-5, where it contains the ratio and weight of the formula compound (I) or an agriculturally acceptable salt or ester thereof to dimethenamide or S-dimethenamide Cove MF about 5:823 to about 5:3.</p>
٤٦١٥
-١٢-
<p dir="rtl">36. The composition of any dye (I) or an agriculturally acceptable salt or an ester thereof to oryzalin or an acceptable salt or ester Agriculturally, it is divided from about 5523:5 to about 5:9.</p>
<p dir="rtl">37. The composition of any Vietnamese formula C 5-5, which contains the percentage and weight of the formula compound (I) or a salt acceptable to farmers or extracted from it The cost of agriculturally acceptable pendimethalin, salt, or espresso powder is approximately 5523:5 to about 5:3.</p>
<p dir="rtl">38. The composition of any formula (I) or an agriculturally acceptable salt or an ester thereof to propyzamide or an agriculturally acceptable salt Ya Minh Tekkuf from about 633:5 to about 5:4.</p>
53 39. The composition of any Vietnamese formula C 5-5, where it contains the percentage and weight of the formula compound (I) or an acceptable salt
Agriculturally or an ester from it to thiazopyr or an agriculturally acceptable salt or ester from it consists of about 6:5
Detailed description:
Telegraphs
As stated here, the compound of formula (I) has the following structure:
55
<img file="SA4615B1_D0004.tif" />
The compound of formula (I) can be known as 4-amino-3-chumuro-6-(4-chumro-2-fumuro-).
3- Methoxyphenyl (-5- fumuropyridine-2- carboxyacid-6-4-amino-3-chloro
(4-chloro-2-fluoro-3-methoxyphenyl)-5-fluoropyridine-2-carboxylic acid
It was described in Paragraph 7 354 849 (2B), which is included here in its entirety by reference.
23 Growth uses of Formula I include controlling unwanted physical growth.
٤٦١٥
-١٣-
Including grass, leaves, and broadleaf and sedge weeds in many cropping and non-crop stands.
As stated here, microtubule inhibiting herbicides are herbicides that inhibit cell division by binding to tubulin and interfering with the formation of microtubules.
dimethenamide, dithiopyr, oryzalin, microchannel inhibitory pesticides including, but limited to, an agriculturally acceptable salt or salt, carboxymic acid thiazopyr and pendimethalin, propyzamide,
carboxylic acid, carboxylate salt or an ester thereof.
As used herein, dimethanamide is (2-(RS-como-24)-N-dimethyl-3-
53 Thienyl(-2(-N-methoxy-5-methyl ethyl(acetamide-3-RS)-2-chloro-N-(2,4-dimethyl)
thienyl)-N-(2-methoxy-1-methylethyl)acetamide and has the following composition:
<img file="SA4615B1_D0005.tif" />
The S isomer of clarifier (2) (S-chumuro-24)-N-dimethyl-3-thieneyl(-2)-N-
Methoxy-5-methylethyl(acetamide-2)-2-chloro-N-(2,4-dimethyl-3-thienyl)-N 55 methoxy-1-methylethyl)acetamide has been used as a herbicide. Tkr
Tomlin, C., ed. A World Compendium in Herbicidal activity The Pesticide Manual. 15<sup>th</sup> ed. Alton: BCPC Publications, 2009 (hereafter “The
Pesticide Manual, Fifteenth Edition, 2009.”).
Ideal uses of dimethenamide include its use to control annual 23 grass and broadleaf weeds, for example in soybeans, sugar potatoes, dry beans and other crops.
As reproduced herein, dithiopyr is ′S,S-dimethyl-2-(diphemomethyl)-4-(2-methylpropyl)-6-(triphemomethyl)-5-3-pyridine dicarbothioate-2-S ,S′-dimethyl
(difluoromethyl)-4-(2-methylpropyl)-6-(trifluoromethyl)-3,5-
25 pyridinedicarbothioate and has the following structure:
٤٦١٥
-١٤-
<img file="SA4615B1_D0006.tif" />
The Pesticide Manual, Fifteenth Edition, 2009.
Typical uses of dithiopyr include pre and emergency use of annual herbs and herbs, for example in truf.
5 As used here, oryzalin is 4-(dipropylamino)-3-5-dinitrobenzenesimphonamide annual grass and has the following structure:
<img file="SA4615B1_D0007.tif" />
The Pesticide Manual, Fifteenth Edition, 2009.
Ideal uses of oryzalin include pre- and emergency use to control annual weeds and small-seeded broadleaf, for example in fruit trees, hazelnut trees, vines, ornamentals, soybeans, berries, amenity turf, and non-crop areas.
As used here pendimethalin is 5(-N-ethylpropyl(-4-3-dimethyl-6-2-).
N-(1-ethylpropyl)-3,4-dimethyl-2,6-dinitrobenzenamine dinitrobenzenamine
55 The following structure is shown:
<img file="SA4615B1_D0008.tif" />
The Pesticide Manual, Fifteenth Edition, 2009.
٤٦١٥
-١٥-
Ideal uses of pendimethalin include pre-emergency pre-implantation.
post-emergence or emergency country pre-transplanting
Early control of annual weeds and weeds, for example in the most prominent soybeans.
And trees and ficus plants.
5
propyzamide
As used here, thiazopyr is methyl 2-(diphosphoromethyl)-5-4-5-dihydro-2-thiazol(-4-(2-methylpropyl)-6-(triphemomethyl)-3-pyridine. Carboxylate
methyl 2-(difluoromethyl)-5-(4,5-dihydro-2-thiazolyl)-4-(2-
53 methylpropyl)-6-(trifluoromethyl)-3-pyridinecarboxylate and has the following structure:
<img file="SA4615B1_D0009.tif" />
The Pesticide Manual, Fifteenth Edition, 2009.
Ideal uses of pendimethalin include pre-emergency use of annual grasses and species, for example in ficus tree fruit, vines, citrus, sugarcane, pineapples, alfalfa and forests.
As used here, a linolenic herbicide is formulated, for example, a flalal compound to kill, control, or otherwise inhibit diseases that cause plant growth.
As stated here, the amount of success with weed control or control of organic growth is the amount of success from a component that can inversely alter urban growth, for example, to represent growth that deviates from natural development.
Example: desiccation causes inhibition, regulation, killing, or modification of natural development 23
Management and retardation.
٤٦١٥
-١٦-
As stated here, controlling undesirable physical growth means preventing, reducing, killing, or adversely affecting the development and physical growth of plants. Described here are methods for controlling unwanted grass growth through the application of herbicide combinations or formulations. Methods of restoration include, but are not limited to, restoration of the urban growth or a place thereof. Example 5: Restoration in the area adjacent to the urban growth, in addition to restoration before emergence and the country of emergence on foliar (broadcast, direct, broadcast, banded, spot, mechanical, top, or rescue) and restoration. In in-water applications (emerged) and submerged for muddhar, nashar, baqali, ali, water-injected, granular broadcast, and granular spotting 53 granular Spot and bottles (shaker bottle or stream spray) by hand, backpack, machine, tractor, aerial (airplane or helicopter), or in other ways.
As stated here, plants and urban growth include, but are not limited to, germinant seeds, emerging seedlings, plants that spread from propagules, immature green growth, and mature green growth.
As stated here, agriculturally acceptable salts and esters indicate that ester salts have anti-weed activity and can be converted in plants, soil or soil into herbicides. Examples include those that are agriculturally acceptable esters that can be tolerated, oxidized, metabolized, or converted indefinitely in plants, water, or soil to the corresponding carboxylic acid, which may be dissolved or bound depending on the pH.
Examples include salts derived from alkali and alkaline earth metals, and those derived from ammonia and amines. Examples of cations include sodium, potassium, magnesium, and aluminum, with the formula:
25
R<sup>1</sup>R<sup>2</sup>R<sup>3</sup>R<sup>4</sup>N<sup>+</sup>
٤٦١٥
-١٧-
Where it has R<sup>3</sup> R<sup>2</sup> R<sup>1</sup> And R<sup>4</sup> Each of them independently represents hydrogen, C12-C1 alkyl, C12-C3 alkyl, alkenyl, or C12-C3 alkynyl, and each of them is substituted by one or more hydroxy groups, C4-C1 hydroxy, C4-C1 alkoxy, alkyl thio, or phenyl, provided that Af R<sup>3</sup> R<sup>2</sup> R<sup>1</sup> And R<sup>4</sup> Strongly compatible. In addition, any two Mf R<sup>1</sup>
5 R<sup>3</sup> R<sup>2</sup> And R<sup>4</sup> Together they can form an aliphatic difunctional moiety containing 5-52 carbon atoms and up to two oxygen or sulfur. Solutions can be prepared by treating metal hydroxide, such as sodium hydroxide, with an amine, such as ammonia, trimethylamine, diethanolamine 53, methylthiopropylamine, 2-methylthiopropylamine, bisallylamine, butoxyethylamine Pf 2-butoxyethylamine morpholive morpholine dodecylamine cyclododecylamine or benzylamine or with tetraalkylammonium hydroxide such as tetramethylammonium Tetramethylammonium hydroxide or Colif hydroxide.choline hydroxide
55 C10-c12-c3 c12-c3 Alkini or C10-C7 AR-Alkali Al-Kahtal ARYL-SUBSTITUD ALKYL ALCOHOLS Like Methyl ALCOOLS is an ISOPR OPYL alcohol -Biotano -1
butoxyethanol 2 butanol
methoxypropanol allyl alcohol
benzyl alcohols or propargyl alcohol 23
Not substituted or replaced. The benzyl alcohol can be substituted with a set of 3-5 independently rotating substituents of C4-C1 alkyl halogen or C4-C1 alkoxy halogen. Esters can be prepared by coupling acids with alcohols using any number of suitable activating agents, such as peptide couplings, such as dihexyl hydrocarbodiimide.
carbonyl diimidazole or dicyclohexylcarbodiimide (DCC)
(CDI); by reacting acids with an alkylating agent such as alkylhalides or alkylsulfonates in the presence of a base such as triethylamine or lithium carbonate; or by reacting with an acid
٤٦١٥
-١٨-
acid chloride corresponding to an acid with a suitable alcohol; By reacting the corresponding acids with a suitable alcohol in the presence of an acid catalyst or by esterification.
.transesterification
Structures and methods
5 Provided here is a herbicide formulation that includes a herbicide effective quantity of (A) compound of formula (I).
<img file="SA4615B1_D0010.tif" />
or an agriculturally acceptable salt or ester, and (b) a herbicide that inhibits microflora. In some countries
dimethenamide, dithiopyr, oryzalin, a microbial inhibitor herbicide that consists of an agriculturally acceptable herb or salt, carboxymic acid, thiazopyr salt, pendimethalin, propyzamide,
53 Carboxylate or ester thereof.
Also provided here is a method for controlling unwanted green growth, which includes contact with the green growth, or a little of it, for example, an area adjacent to the plants that have been filled, or spread on the soil or passerby to prevent the emergence or green growth. It is agriculturally acceptable and (b) a herbicide that inhibits microflora. In laxative plants, the methods employ the compositions 55 described here.
In addition to that, in some countries, the combination of a compound (I), an agriculturally acceptable salt or ester thereof, and a protoporphyrinogen oxidase inhibitor, or an agriculturally acceptable salt or ester thereof, shows synergism. For example, the active ingredient of a herbicide is more volatile in the combination than when Used alone, synergy is defined here as an interaction of two or more factors such that the effect when combined is greater than the effect expected based on the response of each factor at
Sustainability alone.Lawrence: Weed.<sup>th</sup> ed9 .Herbicide Handbook .ed .S “Senseman 2337 Science Society of America. In Nama C Laxative FFA formulations show synergy as fibrous
٤٦١٥
-١٩-
By Dalla Colby. Calculation of the synergistic .5967 .RS Colby and antagonistic
22-23:55Weeds. response to herbicide combinations
In softening formulas, one of the formulations and methods described here is the compound of formula (I), that is, the carboxylic acid is used. In softening formulas, a carboxylate salt is used from the formula compound (I).
5 A soft product used to store argyle or alkyl. In the form of a laxative, benzyl and substituted benzyl or 4-C1 alkyl are used, for example n-butyl ester. In laxative forms, benzyl ester is used.
dimethenamide, dithiopyr, or salt or ester thereof (I) in the form C F F compound formula
Or agriculturally acceptable salt: thiazopyr acid, oryzalin, pendimethalin, propyzamide,
53 Carboxylaminate is a carboxylate salt or an ester thereof formulated in a composition that is mixed in a tank mixed or used simultaneously or used sequentially.
The herbicidal activity of compounds is exerted when they are applied directly to the plant or to parts of it in the growth stage. The effect is observed depending on the type of plant, growth stage, and sustainability parameters of dilution, spray drop size, and particle size.
55 particle size, solid components, environmental conditions at the time of use, the sustainable compound, permanent adjuvants and carriers, soil type and its type. In addition to the chemicals used and their quantity. Various factors can be adjusted to enhance selective or non-selective herbicidal action. In some models, the structures described here are sustained after emergence, sustained before emergence, or
23 It expands in the in-water application that submerges the most paddy rice or in the depths of passing water bodies (for example, large lakes and streams) on growth.
Relatively smooth grass is not desirable to achieve maximum weed control.
In some cases, the formulations and methods provided here are used to control weeds in crops including, but not limited to, direct land, aquatic crops, and most cultivated cereals.
25 Spelt wheat, oats, rye, rapeseed, sugarcane, sunflower, oilseeds, canola, sugar beet, soybeans, cotton, pineapple, pastures, and land crops.
Lush and pastures, fallowland, lush trees and shrubs, aquatic plants, crops
Crops and vegetables, artificial vegetative control (IVM) and road control (ROW).
٤٦١٥
-٢٠-
In beautiful gardens, the formulations and methods provided here are used to control rice weeds. In large-scale crops, rice is either directly raised or aquatic or the most cultivated.
The formulations and methods provided here can be used to control unwanted physical growth in glyphosate-resistant - 5-enolpyruphyl-3-phosphate (EPSP) resistance inhibitor.
5 Synthase resistance - glufosinate - Symphonylureas, pyrimidinyl resistances Thiobenzoate, triazolopyrimidine, tertiary symphonyl aminocarbonyl, resists.
53 Azolinone resistance to acetolactate synthase (ALS) or acid acetohydroxy synthase (AHAS) inhibitor resistance. 4-hydroxyphenyl-pyruvate dioxygenase (HPPD) inhibitor resistance. Resistance to mitosis inhibitors, resistance to microtubiol inhibitors, resistance to fatty acid inhibitors.
55 Resistance to inhibitors of fatty acids and fats Resistance to inhibitors of photosynthesis I Resistance to inhibitors of photosynthesis II Resistance to arizin and bromoxynyl resistance (such as, but not limited to, soybeans, rice oilseed rape/canola, corn, sorghum, sunflower, sugar beet, sugar cane, turf, etc.) Example: Glyphosate resistance EPSP synthase inhibitor resistance Glufosinate resistance Gammotamime synthase inhibitor resistance Dicamba resistance
23 Phenoxyauxin Resistances Pyridoxyl Oxin Resistances Synthetic Oxin Resistances Oxin Transport Inhibitor Resistances Arimoxy Phenoxypropionate Resistances Hexanediodine Resistances Phenyl Pyrzolin Resists ACCase Inhibitor Resistances Imidazolinone Resistances
imidazolinones sulfonylureas pyrimidinyl thiobenzoate resists
Triazolopyrimidines resist pyrimidinylthiobenzoates
25 Resistances to sulfonylaminocarbonyltriazolinones. Resistances to ALS or AHAS inhibitors. Resistances to HPPD inhibitors. Resistances to phytoene desaturase inhibitors. Resistances to carotenoids biosynthesis inhibitors. Resistances to PPO inhibitors. Resistances to mitoses biosynthesis inhibitors. Resistances to mitotic division inhibitors. Resistances to microtubiol inhibitors. Resistances to sesame toma fatty acid inhibitor Resistance to fatty acid and lipid inhibitors
٤٦١٥
-٢١-
Resistances to inhibitors of photosynthesis I Resistances to inhibitors of photosynthesis II Resistances of photosynthesis
And bromoxynyl resistance. Formulations and methods may be used to control undesirable growth in crops that possess varying resistance traits with complementary chemistries and/or modes of action of inhibitors. In other countries, a compound of formula (I) or a salt or 5 ester thereof and a complementary herbicide or salt or ester thereof are used in combination with herbicides.
Selectivity of crops that complement the spectrum of herbs that are controlled with these compounds in the sustainable application rate. In other countries, the formulations described here and the more specific complementary herbicides that are produced at the same time, either in combination formulations, in a tank mix, or sequentially.
53 Formulations and methods can be used to control unwanted root growth in crops that exhibit agronomic stress tolerance (including but not limited to drought, cold, heat, salt, bitterness, nutrient, fertility and pH) and pest tolerance (including but not limited to It is not limited to insects, fungi, and pathogens (recipes for improving crops).
55 Improvement traits (including, but not limited to, the yield of protein, carbohydrate, or oil content, protein, carbohydrate, or plant oil composition, and plant stature).
The formulations and methods provided here are used to control unwanted growth. Undesirable growth includes, but is not limited to, unwanted growth that occurs in 23 of the most prominent grains: wheat, rye, and rye Elephant or sugar cane
The worshipers of the sun, the oil, the custodian, the cotton, the cotton, the conscious of the land of the land, the cotton, the conscious of the land of the land Water Captures Plantation Crops, IVM) IVM (and ROW).
25 In other countries, the methods presented here are used to control unwanted green growth in rice. In soft crops, unwanted hair growth is Brachiaria platyph ylla.
broadleaf signalgrass (Webster .D.R)Nash(Urochloa platyphylla or Nash).Groseb(Echinochloa )DIGSA large crabgrass( .Scop).L(Digitaria sanguinalis )BRAPP
٤٦١٥
-٢٢-
ECHCG barnyardgrass( . Beauv. P).L(galli -Echinochloa crus )ECHSS(species( Echinochloa )ECHCV gulf cockspur( . Schult)Kunth( pavonis -Echinochloa crus
Fritsch (Ard) Echinochloa oryzoides (ECHCO junglerice) LINK (L(colonum late (Vasinger) (Vasinger) Echinochloa oryzicola (ECHOR early watergrass)
5 rice (Pol-Koso)Stapf(Echinochloa ph yl lopogon)ECHPH watergrass
creeping river ( Hitchc)Kunth( Echinochloa polystachya )ECHPH barnyardgrass Leptochloa (ISCRU saramollagrass( .
Amazon ( . Hitchc ).Presl(Leptochloa panicoides )LEFFA bearded sprangletop(Gray
53 red(Oryza species )LEFPA sprangletop and Panicum )ORYSS weedy rice
Paspalum dilatatum Poir (PANDI fall panicum( . Michx). L(dichotomiflorum.
itchgrass(Clayton .D.W).Lour(Rottboellia cochinchinensis (PASDI dallisgrass)
smallflower flatsedge(Cyperus difformis L (CYPSS(Cyperus species)).ROOEX
yellow nutsedge) Cyperus esculentus L (MAPDU). Cyperus dubius Rottb (CYPDI).
55 purple ( .Cyperus rotundus L )CYPIR rice flatsedge(
globe ( Vahl ).L(Fimbrist yl is miliacea )ELOSS(Eleocharis species )CYPSE
Schoenoplectus juncoides (SCPSS) Schoenoplectus species (FIMMI fringerush)
Palla).L(Bolboschoenus maritimus (SCPJU Japanese bulrush). Or Roxb.
23 Schoenoplectus (SCPMA sea clubrush) Lye. Schoenoplectus maritimus L.
jointvetch) Aeschynomene species (SCPMU ricefield bulrush). mucronatus L.
(ALRPH alligatorweed). Griseb.Mart(Alternanthera philoxeroides)AESSS
Amaranthus species (ALSPA common waterplantain). aquatica L-Alisma plantago
pigweeds) and (AMMCO redstem) (Ammannia coccinea Rottb) (AMASS amaranths).
25 . Hassk).L(Eclipta alba (COMBE Bengal dayflower).Commelina benghalensis L.
ducksalad(Vahl /. Willd).SW(Heteranthera limosa (ECLAL American false daisy)
Ipomoea (HETRE roundleaf mudplantain) . & P.Heteranthera reniformis R (HETLI)
iv yl eaf ( . Jacq ).L(Ipomoea hederacea )IPOSS morningglories(species)
(LIDDU low false pimpernel(Pennell).L(Lindernia dubia)IPOHE morningglory
33 willow-southeastern primrose(Ludwigia linifolia Poir (LUDSS(Ludwigia species).
٤٦١٥
-٢٣-
willow-longfruited primrose(Raven).Jacq(Ludwigia octovalvis)LUDLI
(MOOKA monochoria) Monochoria korsakowii Regel & Maack (LUDOC)
(MOOVA monochoria) Presl ex Kuhth. C). F.Burm(Monochoria vaginalis
Polygonum pens vanicum )MUDNU doveweed( Brenan ).L(Murdannia nudiflora)
ladysthumb(Polygonum persicaria L. (POLPY Penns yl vania smartweed). L. 5
Rotala (mild smartweed POLHP). Polygonum hydropiperoides Michx (POLPE).
arrowhead( Sagittaria species (ROTIN Indian toothcup( Koehne ).Wild( indica or (SEBEX hemp sesbania(
53 In other countries, the methods presented here are used to control unwanted organic growth in grains. In the case of laxative growth, unwanted disease is lopecurus myosuroides
APESV windgrass( Beauv).L(venti -Apera spica (ALOMY blackgrass).Huds(
(BROTE downy brome). Bromus tectorum L. (AVEFA wild oat). Avena fatua L.
littleseed (Phalaris minor Retz (LOLMU Italian ryegrass). Lolium multiflorum Lam).
55 Setaria pumila (POANN annual bluegrass). Poa annua L (PHAMI canarygrass).
Beauv).
Galium aparine L (CIRAR Canada thistle). Scop).L(Cirsium arvense)CHEAL.
23 ))KCHSC kochia( . Schrad).L(Kochia scoparia )GALAP catchweed bedstraw
wild (Matricaria recutita L (LAMPU purple deadnettle). Lamium purpureum L).
Porter )Less(Matricaria matricarioides )MATCH chamomile ) pineapple weed
Polygonum convolvulus L (PAPRH common poppy). Papaver rhoeas L (MATMT).
(wild buck wheat Sinapis (SASKR Russian thistle) Salsola tragus L (POLCO)
25 L(Stellaria media (SINAR wild mustard). Sinapis arvensis L (SINSS(species.)
Persian speedwell(Veronica persica Poir (STEME common chickweed).Vill).
VIOAR field violet (Viola arvensis Murr (VERPE) or wild (Viola tricolor L).
.)VIOTR violet
٤٦١٥
-٢٤-
In other countries, the methods presented here are used to control unwanted urban growth in IVM fallowland and ROW. In the growth of the laxative, the abnormal growth of the cartilage
What is desired is Cassia (AMBEL common ragweed). mbrosia artemisiifolia L.
spotted ( . non Lam.Centaurea maculosa auct )CASOB sickle pod(obtusifolia 5 )CIRAR Canada thistle( .Scop).L(Cirsium arvense )CENMA knapweed
wild carrot( Daucus carota L (CONAR field bindweed(
prickly sida( Sida spinosa L (RUMOB broadleaf dock( Rumex obtusifolius L).
53 Sinap (SIDSP Sonchus arvensis L. (SINAR wild mustard). rvensis L.
Taraxacum (SOOSS goldenrod) Solidago species (SONAR perennial sowthistle)
white (Trifolium repens L (TAROF dandelion) Weber ex Wiggers .H.officinale G
(URTDI common nettle). Urtica dioica L or (TRFRE clover
In some countries, the methods presented here are used to control unwanted annual growth in perennial crops, trees, shrubs and seasonal crops. In growth c laxative f growth
(ALOMY blackgrass). lopecurus myosuroides Huds. Unwanted damage is
Urochloa or Brachiaria decumbens Stapf (AVEFA wild oat). Avena fatua L.
Brachiaria brizantha (BRADC Surinam grass) Webster .D.R)Stapf(decumbens beard ( .D.R). Rich. ex A.Hochst(Urochloa brizantha or .Stapf). Nash).Groseb(Brachiaria platyph yl la)BRABR grass 23
(Link)Brachiaria plantaginea (BRAPP broadleaf signalgrass) Webster .D.R(Nash)
(BRAPL alexandergrass) Webster .D. R)Link(Urochloa plantaginea or Hitchc).
Digitaria horizontalis Willd (CENEC southern sandbur). Cenchrus echinatus L.
sourgrass (Mez ex Ekman).L(Digitaria insularis (DIGHO Jamaican crabgrass)
Echinochloa (DIGSA large crabgrass). Scop).L(Digitaria sanguinalis)TRCIN 25
Link ).L(Echinochloa colonum (ECCHCG barnyardgrass( . Beauv. P).L(galli -crus
Lolium (ELEIN goosegrass).
Setaria (PANMI proso millet-wild). Panicum miliaceum L (PANDI panicum).
٤٦١٥
-٢٥-
green foxtail( . Beauv).L(Setaria viridis )SETFA giant foxtail( .faberi Herrm
Sorghum bicolor (SORHA Johnsongrass). Pers.L(Sorghum halepense)SETVI
Cyperus esculentus L (SORVU shattercane) Arundinaceum. Moench ssp.L(
(CYPRO purple nutsedge) Cyperus rotundus L. (CYPES yellow nutsedge)
5 pigweeds(Amaranthus species (ABUTH velvetleaf).Abutilon theophrasti Medik
Ambrosia artemisiifolia L (AMASS amaranths) and AMBEL common ragweed.
giant (Ambrosia trifida L (AMBPS western ragweed). Ambrosia psilostachya DC).
(ANVCR spurred anoda( . Schlecht ).L( Anoda cristata )AMBTR ragweed
hairy (Bidens pilosa L. (ASCSY common milkweed). Asclepias syriaca L.
53 DC).Aubl(Borreria alata )BOISS(Borreria species )BIDPI beggarticks. or
Spermacose latifolia (BOILF broadleaf buttonweed). Spermacoce alata Aubl
common lambsquarters(Chenopodium album L (BOILF broadleaved button weed).
Commelina (CIRAR Canada thistle). Scop).L(Cirsium arvense)CHEAL
jimsonweed( Datura stramonium L (COMBE tropical spiderwort). benghalensis L).
55 wild ( Euphorbia heterophyl la L )DAUCA wild carrot( Daucus carota L )DATST.
Euphorbia hirta L (EPHHL poinsettia). Or garden (. Millsp).L(Chamaesyce hirta
Erigeron (EPHDE toothed spurge). Euphorbia dentata Michx (EPHHI spurge).
bonariensis L. or Erigeron (ERIBO hairy fleabane). Cronq).L(Conyza bonariensis)
canadensis L. or Conyza canadensis (ERICA Canadian fleabane).
23 Helianthus annuus (ERIFL tall fleabane) Walker . H.E).Retz(Conyza sumatrensis)
common(L. Sunflower Griseb).L(Jacquemontia tamnifolia)HELAN.
iv yl eaf (. Jacq).L(Ipomoea hederacea (IAQTA smallflower morningglory)
Lactuca (IPOLA white morningglory). Ipomoea lacunosa L (IPOHE morningglory)
common purslane( .Portulaca oleracea L (LACSE prickl ettuce( .Torn/.serriola L
25 Sida (SIDSS sida) Sida species (RCHSS pusley) Richardia species (POROL)
(SINAR wild mustard) (Sinapis arvensis L. (SIDSP prickly sida). spinosa L.)
Tridax procumbens (SOLPT eastern black nightshade(Solanum ptychanthum Dunal TRQPR coat buttons) .L) or common cocklebur(Xanthium strumarium L).
.)XANST
٤٦١٥
-٢٦-
In some countries, the methods provided here are used to control unwanted internal growth of the turf. In Chinese models, unwanted physical growth is English (Bellis perennis L).
Cyperus species (CYPES yellow nutsedge). Cyperus esculentus L (BELPE daisy Diodia (DIGSA large crabgrass). Scop). L(Digitaria sanguinalis (CYPSS)
5 (EPHSS spurge) Euphorbia species (DIQVI Virginia buttonweed). virginiana L.
Hydrocot yl e umbellata L (GLEHE ground ivy). Glechoma hederacea L.
Lamium (K yl SS k yl linga) K yl linga species (HYDUM dollarweed)
doveweed (Brennan).L(Murdannia nudiflora (LAMAM henbit).amplexicaule L).
broadleaf (Plantago major L )OXASS woodsorrel(Oxalis species)MUDNU
53 (PLALA narrowleaf plantain/buckhorn). Plantago lanceolata L. (PLAMA plantain).
broadleaf (Rumex obtusifolius L (P yl TE chamberbitter). Ph yl lanthus urinaria L Stellaria (STAFL Florida betony). Stachys floridana Shuttlew (RUMOB dock)
Or
55 .)VIOSS wild violet(Viola species.)
In general, the formulations and methods provided here are used to control unwanted growth of weeds and broad-leaved weeds. In beautiful designs, the formulations and methods are available
Amaranthus, Brachiaria or Here it is used to combat unwanted species, which include Urochloa, Chenopodium, Cirsium, Cyperus, Digitaria, Echinochloa, Ipomoea, Kochia, Lamium, Leptochloa, Papaver, Schoenoplectus, Sesbania, Setaria, Sin apis, Stellaria, and 23
.Xanthium
In many countries, the compound is a compound (I) or an agriculturally acceptable ester or salt thereof and a herbicide.
Amaranthus retroflexus L. A microbial inhibitor or an agriculturally acceptable salt or ester used to combat (redroot pigweed, AMARE), Brachiaria platyphylla (Griseb.) Nash or Urochloa platyphylla (Nash) RD Webster (broadleaf signalgrass, BRAPP), Brassica napus 25 (winter). rapeseed, BRSNW), Chenopodium album L. (common lambsquarters, CHEAL), Cirsium arvense (L.) Scop. (Canada thistle, CIRAR), Cyperus esculentus L. (yellow
nutsedge, CYPES), Cyperus difformis L. (smallflower umbrella sedge, CYPDI),
Cyperus rotundus L. (purple nutsedge, CYPRO), Digitaria sanguinalis (L.) Scop. (large crabgrass, DIGSA), Echinochloa crus-galli (L.) Beauv. (barnyardgrass, ECHCG), 33
Echinochloa colona (L.) Link (junglerice, ECHCO), Echinochloa oryzoides (Ard.) Fritsch (early watergrass, ECHOR), Ipomoea hederacea Jacq. (ivyleaf morningglory, IPOHE), Kochia scoparia (L.) Schrad. (kochia, KCHSC), Lamium purpureum L. (purple deadnettle, LAMPU), Leptochloa chinensis (L.) Nees (Chinese sprangletop,
٤٦١٥
-٢٧-
LEFCH), Papaver rhoeas L. (common poppy, PAPRH), choenoplectus juncoides (Roxb.) Palla (Japanese bulrush, SCPJU), Sesbania exaltata (Raf.) Cory/Rydb. Ex Hill (hemp sesbania, SEBEX), Setaria faberi Herrm. (giant foxtail, SETFA), Sinapis arvensis L. (wild mustard, SINAR), Stellaria media (L.) Vill. (common chickweed, STEME), and Xanthium strumarium L. (common cocklebur, XANST). 5
Formula I, an agriculturally acceptable salt, or an ester thereof, can be used to control weeds that are resistant or tolerant to weed herbicides, including the use of the compound compound I, an agriculturally acceptable salt, or an ester thereof, and the composition described herein may be used to control weeds that are resistant or tolerant to pesticides. Weeds include, but are not limited to, resistant or tolerant herbs
53 These include resistance to the biotype, or resistance to ascetolactate sulfonthase (ALS) inhibitors Acetohydroxysynthase (AHAS) (methyl imidazolinone sulfonyl urea pyrimidinethiobenzoate)
dimethoxy-pyrimidiens pyrimidinylthiobenzoates
Triazolopyrimidine sulfonamides, sulfonyl amino acids
Sulfonylaminocarbonyltriazolinones (photosynthesis inhibitors II 55) phenylcarbamates periphyl pyridazinones t arīfayfaqifzifz
Triazines Triazinones Uracils Amides Ureas Benreas The Thinnah Nitriles VINYLPYRIDAZINES (Coa Coa Carboxe)
aryloxyphenoxypropionates aryloxyphenoxypropionates hexophenoxypropionate diphthenic acid GFGFIFY
23 cyclohexanediones, phenylpyrazolines (synthetic auxin) (example)
phenoxycarboxylic acids benzoic acids
pyridine carboxylic acids quinolin carboxylic acid
Para-phthalamates A transport inhibitor (e.g. phthalates) quinoline carboxylic acids
Carbazones (semicarbazones) inhibitors of hypoglycemic compounds I (methylphenylpyridylphenylmethyl methylphenylpyridylphenylmethylmethylphenylmethylphenylpyridylphenylmethylphenylmethylphenylpyridylphenide). Yo
25 Bibyridyliums (Satanzaz 5-ENPSP Pervity-3- Fosa
Glyphosate (such as biafos Glufosinate (inhibitors) Benzamides Hamd Al -Benzoor Ins
33 (VLCFA) (methyl methyl acetamides, chloroacetamides, oxyacetamides, tetrazolinones) acid synthesis inhibitors
٤٦١٥
-٢٨-
October and Al-Dahof Oxazoliddionions in XADIAZOOLES OxazolidDindions in the XAZOLIDONEDIONES VIXAZOLEDONES YRAZOOLES Praimidin
5 phenylpyrazoles thiadiazoles triazolinones) inhibitor of the biosynthesis of carotenoids (eg aclonifen amitrole clomazone) inhibitor phytoene desaturase (PDS) furanones anilidex
Inhibitors of pyridines, pyridiazinones, pyridazinones, phenoxybutan-amides
4- Hydroxyphenyl pyruvate dioxygenase (HPPD) (methyl callistemones isoxazole)
53 isoxazoles, triketones, pyrazoles (inhibitor of cisimose biosynthesis) (e.g., nitrile).
ben nitriles Gluocarboxylamine
Triazolocarboxams Hall Difenzoquat Acids and the Displacement Displacement.
55 However, it is not limited to the biological species that are resistant to HIV, and herbicides are the biological species that are resistant to HIV Chemical classes Biological species Biotypes Multiple resistance Types of resistance to herbicides Herbicides and biotypes Multiple resistance or mechanics
Target site resistance Example: tolerance mechanisms
Or metabolic resistance.
23 In a variety of compositions and methods described herein, the compound of formula (I), the salt or the ester thereof, is used in combination with dimethenamide or the resulting isomer, for example the S-isomer S thereof. Considering the compositions in Vietnam The ratio and weight of the compound of formula (I) or salt or ester from it to dimethenamide or its isomer from which it is extracted is in ml This ranges from about 5:823 to about 3:5 in specific sizes.
25 The weight ratio of the formula compound (I), salt or ester thereof, to dimethenamide or the isomer thereof, ranges from about 5:545 to about 5:2. There are many specific types of compounds that include a compound of the formula (I), a benzene thereof, or n- n-butyl ester and dimethenamide or its isomer. With regard to hammering in specific methods, methods include attaching unwanted plants or islands of seed or drop to the soil or passerby to prevent the emergence or growth of the plant island complex described herein. In Bald
٤٦١٥
-٢٩-
The compound was applied at an application rate from about 532 grams of active ingredient per hectare (g ai/ha) to about 5943 g ai/ha, depending on the total amount of active ingredients in the compound Specific application The compound application rate is about 535 gm of active matter per hectare (g ai/ha) to about 5253 ai/ha, depending on the amount of 5 grams per hectare The quantity is the quantity of active ingredients in the compound. In some cases, the methods include contacting unwanted plant pollen, or its particles or residues, on the soil or passerby to prevent the emergence or growth of the plant pollen compound, with a compound of formula (I), a salt or ester thereof, and dimethenamide, or its isomer, derived from it Example: sequentially or consecutively Ezmf. In Japan, dimethenamide or its isomer was applied at a rate from about 533 gai/ha to about 5643 gai/ha and the formula compound 53(I) was applied Mamlah or Isgtar Munglah in Maldives, Mamfah, about 2 gae/ha, about 333 gae/ha . Fffi namfafaa c
Specific methods that use the formula compound (I), benzyl alkyl ester, n-butyl ester, dimethenamidide, or the Mab isomer.
In certain examples of compounds and methods described herein the compound of Formula I or a salt or ester thereof is used in combination with dithiopyr or an agriculturally acceptable salt thereof. Taking into account the compounds in the year 55, the ratio by weight of the formula compound (I), salt or ester from it to dithiopyr is in a range About 5:5523 to about 9:5. In specific models, the weight ratio of the formula compound (I) or its salt or ester to dithiopyr is in the range from about 5:32 to about 5:5. In specific models, the weight ratio of the formula compound (I) or its salt or ester to dithiopyr is in the range from about 5:5 to about 5:64. In specific models, the weight ratio of the formula compound (I) is ) or salted or esterified from it 23 To dithiopyr in a range of about 5:2 to about 5:32. In specific patterns, the compounds are added there A compound of formula (I) or manganese benzyl and dithiopyr. In one growth, the cost includes the formula compound (I) and dithiopyr, while the ratio of the weight of the formula compound (I) to dithiopyr is ml From about 5:4 to about 5:32. In one model, the benzyl ester compound is composed of a compound (I) and dithiopyr Meanwhile, the ratio of the weight of the benzyl ester of the formula compound (I) to
25 Dithiopyr M from about 5:2 to about 5:32. Considering a hammer in specific countries, the methods include contacting the unwanted plant or roots thereof or leaving them on the soil or passerby to prevent the emergence or growth of the root compound The plant described here. In general, the compound was applied at an application rate of about 37 grams of active substance per hectare (g ai/ha) to about 2543 g ai /ha Depending on the quantity of active ingredients in the compound in a specific area the compound is applied in a country.
٤٦١٥
-٣٠-
Apply from about 43 grams of active ingredient per hectare (g ai/ha) to about 233 g ai/ha depending on the amount of active ingredients in the compound In Vietnam, the method includes contacting unwanted vegetation or any ebb or flow thereof. On the soil or passerby to prevent the emergence or growth of the plant carrot compound with the formula (I) compound or a salt or an ester thereof and dithiopyr or a salt thereof worked on
5 For example sequentially or simultaneously. In countries where dithiopyr has been applied for about 35 years
gai/ha to about 2243 gae/ha, and the formula compound (I) or its salt or ester was applied with a mixture of about 2 gae/ha to about 333 gae/ha. In Balad Al -Namwa, the Dithiopyr is required in the number 57 GAI/Ha Lu ؿ /ha. In 53 countries, dithiopyr was applied at a rate from about 35 gai/ha to about 543 gai/ha.
Applying the compound of formula (I) or salt or ester thereof with a mixture of about 4.38 g of acidic acid for each
hectare (gae/ha) to about 35 gae/ha. In certain areas, roads use the formula (I) complex or
Benzyl or n-butyl ester and dithiopyr. In the growth of one c, the methods reproduce the compound of the formula (I) and
dithiopyr, while the formula compound (I) was applied in a volume of about 4.38 grams of sulfuric acid per
55 hectare (g ae/ha) to about 35 g ae/ha and dithiopyr was applied at a rate of about 35 g ae/ha
To about 283 g ai/ha. In one model, the methods used the benzyl ester of the formula (I) and dithiopyr, while the benzyl ester of the formula (I) was applied in a volume of about 4 .38 EGP
Calcium acid per hectare (g ae/ha) to about 57.5 g ae/ha. Dithiopyr was applied at a rate from about 35 g ae/ha to about 543 g ae/ha. In specific areas, it was applied. The availability of methods and vehicles 23 that use the formula compound ( I) or an salt or ester thereof combined with dithiopyr to control the BRAPP
.XANST or rSCPMA IPOHE ECHOR ECHCO ECHCG
In specific examples of compounds and methods described herein the compound of formula (I) or a salt or an ester thereof is used in combination with oryzalin or a salt thereof. Taking into account the compounds in countries around the world, the transfer rate of the compound of formula (I) or its hydrolyzate or ester to the caecal cecum or its eluent is within a reasonable range.
25 About 5:3363 to about 5:5. In certain models, the weight ratio of the formula compound (I) or its salt or ester to the caecal cecum or its salt is in the range of about 5:256 to about 5:2. In certain models, the weight ratio of the formula compound (I) or its salt or ester to the caecal cecum or its salt is in the range of about 5:53 to about 5:552. In certain models, the weight ratio of the formula compound (I) or its salt or ester to the caecal cecum or its salt is in the range of about 26:5 to about 256:5.
٤٦١٥
-٣١-
In certain embodiments the compounds herein include the compound of formula (I) or the benzyl ester thereof and the oryzyl or salt thereof. In one growth, the component includes the formula compound (I) and ore azlev, while the weight ratio of the formula compound (I) to the caeum of azleef is about 5:26 to about 252:5. In one growth, the compound includes the benzyl ester of the formula compound (I). The cecum is pure, while the weight ratio of the 5-benzyl ester from the formula compound (I) to the cecum is from about 5:32 to about 5:256. Considering rooting in specific methods, methods include attaching the unwanted plant or rootstock thereof or dropping it onto the soil or passerby to prevent the emergence or growth of the rootstock plant described herein. In some countries, the compound was applied at an application rate from about 282 grams of active ingredient per hectare (g ai/ha) to about 7323 g ai/ha depending on the quantitative amount of active ingredients in the 53 compound. In specific schemes the compound is applied at an application rate from about 285 grams of active ingredient per hectare (g ai/ha) to about 5553 g ai/ha depending on the amount of active ingredient in the compound. In some schemes methods include spray contact Unwanted plants, or carrots thereof, or their residue on the soil or passing by, to prevent the emergence or growth of the plant carrot compound with formula (I), a salt or ester thereof, or oryzyl, or a salt thereof, for example, sequentially or simultaneously. In 55 countries, the base oil, salt, or free base thereof was applied at a rate from about 283 gai/ha to about 6723 gai/ha, and the formula compound (I), salt, or ester thereof was applied at a rate of about 2 gae/ha. To about 333 gae/ha. In some countries, a simple caecum solution or a salt thereof was applied at a rate of about 543 gai/ha to about 2243 gai/ha, and the formula compound (I) or a salt or an ester thereof was applied at a rate of about 2 g of sulfuric acid per hectare (gae/ha). To about 42 23 gae/ha. In some countries, the pure caecum or salt or ester thereof was applied at a rate of about 283 gai/ha to about 5523 gai/ha, and the formula compound (I) or its salt or ester was applied at a rate of about 4.38 g of sulfuric acid per hectare (gae/ha). To about 32 gae/ha in specific models, the methods use the compound (I) or a benzyl thereof and oriazolene. In a single growth, the methods used the formula compound (I) and ureazelin, while the formula compound (I) was applied at a rate of about 5.3 g of neutralizing acid per 25 hectares (g ae/ha) to about 25.2 g ae/ha, and the cecum was applied at a rate MF is about 283 g ai/ha to 5523 g ai/ha. In the growth of one of the methods that utilize the benzyl ester from the formula compound (I) and orazolene, while the benzyl ester from the compound formula (I) was applied at a rate of about 4.38 g of sulfuric acid per hectare (g ae/ha) to about 57.5 g ae/ha Low cereal was applied at a rate from about 283 gai/ha to about 5523 gai/ha in specific patterns where roads and vehicles were used
٤٦١٥
-٣٢-
Which regenerates the compound of formula (I) or an eraser or ester thereof combined with the cecum of the cecum to the effect of CYPDI IPOHE ECHCG CYPRO CYPES or SCPJU.
In specific examples of compounds and methods described herein the compound of formula (I) or a salt or ester thereof is used in combination with pendimethalin or a salt thereof. Taking into account the compounds in Figure 5, the ratio of the weight of the compound of formula (I) or its salt or ester to the pendimethalene or its salt is in the range of about 5:5523 to about 5:2. In certain models, the ratio of weight of the formula compound (I) or its salt or ester to the pendimethalene or its salt is in the range of about 28:5 to about 4:5. In certain models, the ratio of the weight of a compound of formula (I) or its salt or ester to a pendimethalene is in the range of about 5:448 to about 5:2. The extent of application to the type of weed 53 to be controlled will depend on the degree of control required, time and method of application. In certain models, the ratio of the weight of the formula compound (I) or its salt or ester to the pendimethalene or its salt is in the range of about 4:5 to about 253:5. In certain models, the weight ratio of the compound of formula (I) or its salt or ester to the pendimethalene or its salt is in the range of about 5:8 to about 5:528. In grew c
Specific compounds herein include a compound of formula (I) or a benzyl thereof and pendimethalene. In the growth of one c
55 The MKV includes formula compound (I) and pendimethalf while the ratio of WZF of formula compound (I) to pendimethalene MF is about 5:56 to about 5:528. In one growth, the compound includes the benzyl ester from the formula compound (I) and pendimethalene, while the weight ratio of the benzyl ester from the formula compound (I) to pendimethalene is from about 5:8 to about 5:528. Considering rooting in specific methods, methods include attaching the unwanted plant or carrots thereof or dropping them onto the soil or passerby to prevent the emergence or growth of the plant root complex described herein. In some countries, the compound is applied at an application rate of about 43 grams of active ingredient per hectare (g ai/ha) to about 5983 g ai/ha, depending on the amount of active ingredients in the compound. In specific models, the compound is applied at a rate Apply from about 553 grams of active substance per hectare (g ai/ha) to about 633 g ai/ha depending on the quantitative amount of active substances in the compound. In specific models, compound 25 is applied at an application rate of about 553 grams of active substance. Active matter per hectare (g ai/ha) to about 5593
g ai/ha depending on the quantitative amount of active substances in the compound. . In one example, the method includes contacting unwanted plant matter, islands or residues thereof on the soil or passerine to prevent the emergence or growth of the plant carrot compound with the compound of formula (I), a salt or ester thereof, and pendimethalene or a salt or free base thereof, for example, sequentially. Or Alt Azmf. In the country of growth c
٤٦١٥
-٣٣-
The pendimethalene, salt or free base thereof was applied at a rate from about 543 gae/ha to about 5683 gae/ha, and the formula compound (I) or its salt or ester was applied at a rate from about 2 gae/ha to about 333 gae/ha. In some countries, pendimethalene, salt or free base thereof was applied at a rate from about 73 gai/ha to about 5523 gai/ha, and compound 5 Formula (I) or salt or ester thereof was applied at a rate of about 2 gai/ha. sulfuric acid per hectare. gae/ha) to about 73 gae/ha. In some countries, pendimethyl or its salt or free base was applied at a rate from about 543 gai/ha to about 563 gai/ha, and the formula compound (I) or its salt or ester was applied at a rate of about 4.38 g of sulfuric acid per hectare (gae/ ha) to about 35 gae/ha. In specific models, the methods use the formula compound (I), a benzyl thereof, or n-butyl ester and pendimethalene.
53 In one crop growth, the methods used the formula compound (I) and pendimethalene, while the formula compound (I) was applied at a rate of about 4.38 g of diaphoretic acid per hectare (g ae/ha) to about 35 g ae/ha, and pendimethalene was applied at a rate of about 543 g. ai/ha to about 563 g ai/ha in a single growth. The methods used Formula I and pendimethalene while Formula I was applied at a rate of about 2.5 g sulfuric acid per hectare (g ai/ha) to about 73 g. 55 g ai/ha was applied at a rate from about 543 g ai/ha to about 5523 g ai/ha in one c growth
The methods use the benzyl ester from the compound of formula (I) and pendimethalene, while the benzyl ester from the compound of formula (I) was applied at a rate of about 4.38 g of sulfuric acid per hectare (g ae/ha) to about 35 g ae/ha, and the pendimethalene was applied at a rate of From about 543 g ai/ha to about 563 g ai/ha in specific models, methods and compounds using compound 23 (I) or a salt or an ester thereof combined with pendimethylene or a salt thereof were used to control AMARE.
IPOHE ECHCO ECHCG DIGSA CYPRO CIRAR CHEAL BRNSW .STEME OR SINAR SCPMA PAPRH LEFCH LAMPU KCHSC
In specific embodiments of the compounds and methods described herein the compound of formula (I) or a salt or ester thereof is used combined with thiazopyr, a carboxylic acid salt, or a carboxylate salt or S A liter of food. With 25 considering the compounds in these countries, the ratio by weight of the formula compound (I) or its salt or ester to thiazopyr is in the range from about 5:5523 to about 6:5. In specific models, the ratio of the weight of the formula compound (I) or salt or ester thereof to thiazopyr is in the range of about 5:539 to about 5:5. In specific forms the compounds include the formula compound (I) or the benzyl ester thereof and thiazopyr. Taking into account the road in specific areas, the roads include the connection of unwanted traffic or islands of it.
٤٦١٥
-٣٤-
Or place it on the soil or passers-by to prevent the emergence or growth of the carrot plant described here. In some countries, the compound has been applied at an application rate from about 52 grams of active matter per hectare (g ai/ha) to about 2543 g ai/ha depending on the amount of active matter in the compound How is the compound applied in India? Application: Approximately 55 grams of active material per 5 hectare (g ai/ha) to approximately 5573 g ai/ha depending on the quantity. Thousands of active substances in
The compound. In some cases the methods include contacting the undesirable plant infestation or its ebb or drop on the soil or bypass to prevent the emergence or growth of the plant aphrodisiac compound with the compound of formula (I) or a salt or ester thereof and thiazopyr, for example, sequentially or with a compound of formula (I). Hmmf. In some countries, thiazopyr was applied at a rate from about 53 gai/ha to about 2543 gai/ha, and the Formula 53 (I) compound, salt or degreaser, was applied. It is approximately 2 gae/ha to approximately 333 gae/ha. Fffi namfafaa c
Specific methods use the formula compound (I) or its benzyl ester and thiazopyr. In specific examples, methods and compounds have been used that use a compound of Formula (I) or a salt or ester thereof combined with a thiazopyr to control IPOHE or XANST.
In specific versions of the compounds and methods described herein, the compound of formula (I) or its salt or 55 esters thereof are used combined with propyzamide, a carboxylic acid salt, or a carboxylate salt or an ester thereof. Taking into account compounds in countries of the world, the ratio by weight of a compound of formula (I), salt or ester from it to thiazopyr in a global range is about 5:633 to about 4:5. In certain models, the weight ratio of a compound of formula (I) or its salt or ester to propyosmide is in the range from about 5:35 to about 5:2. In certain forms the compounds include the compound of formula (I) or the benzyl ester thereof and 23 propyzmide. Considering hammering in specific methods, methods include contact with unwanted plants or
The emergence or growth of the plant compound described herein. In some countries, the compound has been applied at an application rate from about 72 grams of active ingredient per hectare (g ai/ha) to about 2533 g ai/ha depending on the amount of active ingredient in the area Ride. In specific applications, the compound is applied at an application rate of approximately 78 grams of active substance per hectare (g ai/ha). Approximately 5552 g ai/ha, depending on the amount of active ingredients in the compound in some countries. The methods include contact Undesirable plant growth, or its traces or residues on the soil or passerby, to prevent the emergence or growth of the plant root compound with a compound of formula (I) or a salt or ester thereof and thiazopyr, for example, sequentially or simultaneously in some countries
Propy was applied at a rate of about 73 gai/ha to about 5233 gai/ha, and a compound was applied.
٤٦١٥
-٣٥-
Formula (I) is a mixture of 2 gae/ha to 333 gae/ha. In some countries, the propionate compound (I) or salt or ester thereof was applied at a rate of about 73 gai/ha to about 5523 gai/ha. 2.5 gae/ha to about 73 gae/ha. In specific models, the methods use the formula compound (I) or the benzyl ester thereof and propyzmide.
5 In specific models, methods and vehicles using the formula I compound or a salt or an ester thereof combined with propyzimide or a salt thereof have been used for control in IPOHE ECHCO ECHCG BRAPP
SEBEX or SETFA.
The components of the mixture described here can be used either separately or as parts of a multi-function weed control system.
53 The application described here can be used in combination with one or more herbicides for broad-spectrum control of unwanted grass growth. When applied with foreign herbicides, the formulation may be formulated with the foreign herbicide or herbicide mixed in a container with the foreign herbicide or herbicide or applied sequentially with the foreign herbicide Or temporary herbicides. In addition to herbicides, it is possible to use a variety of formulations and methods.
D-4 2D; -4 2CPP; -4CPB; -4CPA; -4:55 described here includes, but is not limited to:
2DEB; -4 2DB; -4 3DA; -4 3DB; 4-2 Asters and amines D-4 2 Choline salt
aclonifen TB; acetochlor-5 4 2T; -5 4 2TBA; -6 3 2DP; -4 3DEP; -4
ametri alorac alloxydim allidochlor alachlor acrolein acifluorfen
Aminofo cyclopyrachlor Aminofo amidosulfuron amicarbazone amibuzin ametryn Davegov
anisuron anilofos ammonium sulfamate amitrole methylfos pyralid 23
beflubutamid BCPC barban aziprotryne azimsulfuron atrazine atraton asulam
BensullFuron BenFuresate Benfluralin Bencarbazone Benazolin- Methaye B- Benzipram benzfundizone benzadox
bialaphos benzthiazuron benzo yl prop benzofluor benzofenap benzobicyclon
25 bispyribac bilanafos bicyclopyrone- classifier bromobonil bromacil borax bromofenoxim bromobutide Butafenacil butachlor brompyrazon
but buturon butroxydim butralin buthiuron buthidazole butenachlor butamifos
calcium cyanamide calcium chlorate cafenstrole cacodyl ic acid ylate CEPC CDEA carboxazole chlorprocarb carbetamide carbasulam cambendichlor
٤٦١٥
-٣٦-
chlorbromuron chlorazine chlorazifop chloranocr yl chloramben comethoxycycline
chlorflurenol chlorflurazole chlorfenprop chlorfenac chloreturon chlorbufam chlorimuron chlorimuron chlorimuron chlorimuron chlorimuron chloridazon
cinidon chlorthiamid chlorthal chlorsulfuron chlorpropham xynil- ethyl Slavic 5 Slavic clodinafop cliodinate clethodim cisanilide cinosulfuron-propargife GF
-cloransulam clopyralid cloproxydim cloprop clomeprop clomazone clofop cumyluron cresol credazine CPPC CPMF copper sulfate CMA methylmethylenethylamine
cycloxydim cyclosulfamuron cyclopyrimorate cycloate cyanazine cyanatryn daimuron cypromid cyprazole cyprazine cyperquat but yl-cyhalofop cycluron
dicamba allate-di desmetryn desmedipham delachlor dazomet dalapon 53
Methylamine - diclofop P-dichlorprop dichlorprop dichlormate dichloralurea dichlobenil difenzoquat difenoxuron difenopenten diethat yl diethamquat ulam
dimethametryn dimethachlor dimepiperate dimefuron diflufenzopyr diflufenican dinofenate dinitr dimidazon dimexano P-dimethenamid dimethenamid
disul diquat dipropetryn diphenamid dinoterb dinoseb dinosam dinoprop 55 epronaz endothal eglinazine EBEP DSMA DNOC DMPA diuron dithiopyr ethidimuron ethametsulfuron ethbenzamide ethalfluralin esprocarb erbon EPTC
sulfuronethoxyfenfenethoxyethyl ethofumesate etobenzamid ethobenzamid ethiolate
fenoxaprop fenoprop fenasulam EXD etobenzanid etnipromid etinofen
<p dir="rtl">23 P-fenoxaprop- ethyl ethyl P-fenoxaprop- ethyl ethyl isoxadifen +- ethyl fenoxasulfone</p>
<p>-flamprop flamprop ferrous sulfate fenuron fentrazamide fenthiaprop fenteracol</p>
fluazolate but yl-P-fluazifop fluazifop florasulam flazasulfuron M
flufenacet, flufenican, flufenpyr-ethyl, fluchloralin flucetosulfuron flucarbazone fluometuron flumipropyn flumetsulam, flumezin, flumiclorac-pentyl, flumioxazin flupoxam fluothiuron nitrofen oral GFGORO
fluroxypyr flurochloridone fluridone flupyrsulfuron flupropanate flupropacil amphylfos foramsulfuron fomesafen fluthiacet flurtamone mept yl-fluroxypyr
<p>-P-glufosinate ammonium-glufosinate glufosinate fur yl oxyfen fumiclorac</p>
halauxifen halauxifen glyphosate ammonium- methylphenidate Haloxyfop, haloxydine-methyl, P-haloxyfop-methyl Hexaacetone
٤٦١٥
-٣٧-
imazapyr imazapic imazamox imazamethabenz hexazinone hexaflurate
iodobonil indaziflam indanofan imazethapyr imazosulfuron imazaquin
iodosulfuron iodosulfuron iodomethane- ethyl chloride ioxynil iofensulfuron
isopolinate isonoruron isomethiozin isocil isocarbamid iprymidam ipazine isoxaflutole isoxachlortole isoxaben isouron isoproturon isopropalin 5
MAMA MAA linuron lenacil lactofen ketospiradox carbutilate isoxapyrifop
Ethiotherapy and amino acids thio-MCPA MCPA Ethylene P-mecoprop mecoprop MCPB
mesotrione mesosulfuron mesoprazine mefluidide mefenacet medinoterb metflurazon metazosulfuron metazachlor metamitron metamifop metam methiozolin methiobencarb methazole methalpropalin methabenzthiazuron 53
Methyl isothiocyanate Methyl bromide Methoprotryne methometon methiuron metoxuron metosulam metolachlor metobromuron metobenzuron dymron
metsulfuron metsulfuron metribuzin- methyphic monisouron monalide molinate
naproanilide MSMA morfamquat monuron monolinuron acetic acid kmamono
nitrofen nitralin nipyraclofen nicosulfuron neburon naptalam napropamide 55 km ortho orbencarb OCH noruron norflurazon nitrofluorfen
-paraflufen oxaziclomefone oxasulfuron oxapyrazon oryzalin orthosulfamuron penoxsulam pendimethalin pelargonic acid pebulate paraquat parafluron ethyl
phenisopham pethoxamid perfluidone pentanochlor phenol penta
picloram asulfate mercury phenyl phenobenzuron methylphenmedipha phenmedipham 23
potassium potassium azide potassium arsenite piperophos pinoxaden picolinafen profluazol prodi procyazine methylphenidate -primisulfuron pretilachlor cyanate
prometryn prometon calcium- devigov prohexa proglinazine profoxydim profluralin
propisochlor propham propazine propaquizafop propanil propachlor pronamide prosulfocarb prosulfalin propyzamide propyrisulfuron propoxycarbazone 25
ynate Pyrazog yl pyrasulfotole pydanon prynachlor proxan prosulfuron
pyridafol pyriclor pyributicarb pyribenzoxim pyrazoxyfen Ethayeth ػ Merrac Quinclorac Pyroxsulam
sebuth yl azine metolachlor-S rimsulfuron rhodethanil ethyl-P-quizalofop 33
٤٦١٥
-٣٨-
secbumeton ethoxyglyphthylene SMA simetryn simeton simazine siduron classifierodioum
Residents of the formation of the formations LFALLATE SULCOTRIONE SULFOSULFURON SULFOSATE SULFUTURON SULFOSOLFORON SULFOTETRONTORON:
tepraloxydim tembotrione tefur yl trione tebuthiuron tebutam TCA 523
tetrafluron terbutryn terbuth yl azine terbumeton terbuchlor terbucarb terbacil 5 methylamine -thiencarbazone thidiazuron thidiazimin thiazopyr thiazafluron thenylchlor
thifensulfurn thifensulfuron- methylphenidate GFKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKKK tioclorim tiocarbazil thiobencarb
triaziflam triasulfuron allate-tri triafamone dimaloxyloxytr topramezone
tribenuron tribenuron- methylphenidate triclopyr tricamba amylcolytic acid triclopyr
53 And what's wrong with you? GFGFOVEF triflusulfuron trifluralin trifloxysulfuron trietazine tridiphane
tritac tritosulfuron tripropindan trimeturon trihydroxymethylene trifopsime
xylachlor vernolate and its salts. Optically active isomers and their salts.
The formulations and methods described here may be used additionally with glyphosate synthase 5 inhibitors.
55 Inephyl pyruvate-3-glufosinate (EPSP) dicamba
Phenoxyl Oxygen Pyridoxyl Oxygen Synthetic Oxygen Transport inhibitor Arimoxy Phenoxypropionate Hexane Diphenyl Phenyl Injection Biliferzoline AcetylCoA Carboxylase Inhibitors
(ACCase) Imidazolinone sulfonyl urea pyrimidinyl thiobenzoates
ALS Or discourage specific campaigns
23 ASISATESATIONTATIONDATIONTATIONAD 4- Hydroxus Fenniths Peruvian PPO (S) Live Manufacturing Infalligators for Dismmous, Metzuzi, Microzius inhibitors, such as the sebum, lipids of the sebaceous, brochure, inhibitors of the drains of fatty, and the dixate of the Al -Dahari Al -Dahari, Photosynthesis
25 Glyphosate- Resistance to the DICAMBA resistance to Vinoxi Xiac Yamusi Vinoxi Probionate Herxaf Diwaf Homdi Resistors Viny B Arzolif Rescue ACCASE Resistance Pyrimididinyl thiobenzoate resistances, triazolecho resistances.
٤٦١٥
-٣٩-
Pyrimidine is resistant to ALS- or AHAS-resistant sulfophosphonates HPPD resistors, phytoene desaturase resistors, phytoene desaturase resistors, biosynthesis of carotenoids, PPO resistors, desaturation inhibitors Biosynthesis of methylcellulose mitosis inhibitors, mitochondrion inhibitors, and microtubule inhibitors Ghayd Al-Dahniyfah, Toyimifyfah
5 The poison is resistant to inhibitors of fatty acids and lipids. resistant to photosynthesis inhibitors I. resistant to photosynthesis inhibitors II. These are the types of resistant crops, bromoxyphenyl, resistant crops and crops that have multiple resistant qualities, including resistance to chemicals or resistance to multi-multiplying systems and mechanics. In some cases, it includes the formulation compound (I), a salt or extract thereof, and herbicides supplemented therefrom, or a salt or extract thereof There is a consortium of 53 selective weed pesticides for domestic crops that complete the spectrum of weed control with the compound The areas used are available in proportion. In some countries, the formulations described here and complementary pesticides are used at the same time, either in a combination formulation such as a tank mix or for a sequential application.
In other words, the compositions described herein are used in combination with a herbicide or herbicide R
brassinolide benthiocarb benoxacor (4663MON) 67-AD methylmethylene safeners 55
dimepiperate dicyclonon dichlormid daimuron cyometrinil (mexyl(cloquintocet)
harpin furilazole fluxofenim flurazole fenclorim ethyl -fenchlorazole disulfoton
isoxadifen proteins- ethiofenpyr jiecaoxi jiecaowan oxabetrinil (NA) and N-phenyl symphonic benzoic acid amide to increase selectivity 23. In developing countries, safeners are used in the most expensive grains or whole grains.
The time. In terms of terms, what is meant is cloquintocet or an ester or salt thereof. In developing countries, cloquintocet is used to combat the harmful effects of the compound on grains and grains. In countries of Asia, the safener is cloquintocet (mexyl).
In other words, the compositions described herein are used by the combination of one or more 25 Plant growth rates such as 2,3,5-tri-iodobenzoic acid
IBA IAA acid naphthaleneacetamide α naphthaleneacetamide
4 GLORO FINEVOLOGY
٤٦١٥
-٤٠-
glyphosine fosamine fucus amphiphyllone ancymidol abscisic acid
2 3 5- Tri-iodobenzoic acid mepiquat maleic hydrazide jasmonic acid isopyrimol flurprimidol dichlorflurenol morphactins 2,3,5-tri-iodobenzoic acid benzoic acid
ethyl-brassinolide brassinolide uniconazole tetcyclacis paclobutrazol mefluidide
5 cycloheximide Triapenthenol prohexadinoe methasulfocarb ethylene and trinexapac.
In some countries, growth rates are used in one or more crops or settings, such as the most important cereal crops, broadleaf crops, oilseeds, turf, sugarcane, and sunflowers Take care of the weeds that are pasture
53 fallowland trees and shrubs, trees and other crops are used for decoration. In some cases, the plant growth regulator is mixed with the formulation compound (I) or mixed with the compound (I) and a herbicide that inhibits microorganisms to have negative effects on the plants.
In Balada Al -Namwa, in the provisions of the provisions, there is a sacred one that is a matter The Turkish and the Turkish Consentations for the constituents of the compositions of the extremes of the extremes in the eagerness of the counseling, and the chemical interaction with the components of herbal pesticides or components of the Energy composition must be done . These formulas may be designed to be applied directly to the herb in place, or they may be concentrates or formulations that are poured into an aphrodisiac carrier. They may consist of solid materials, such as dusts and granules 23 and dispersal granules in water -Dispersible granules or internationally available powders
emulsifiable concentrates or liquids such as wettable powders
Solutions, emulsions or suspensions. They may also be available in the form of pre-mix tablets or D-ZF tablets.
Agriculturally acceptable additives and carriers include, but are not limited to, crop oil concentrates; Nonylphenol ethoxylate; Mixed benzyl cocoalkyl dimethyl benzyl
quaternary ammonium salt benzylcocoalkyldimethyl
Petroleum hydrocarbon, alkyl ester, organic acids, and anionic surfactant solutions; C11-C9 is a polyalkyl
٤٦١٥
-٤١-
alkylpolyglycoside; phosphated alcohol ethoxylate; Natural primary alcohols C16-C12 (natural alcohol) ethoxylate; di-sec-butylphenolPO-EO block copolymer; polysiloxane-methyl cap;
5 Nonylphenol ethoxylate+ Urea
ammonium nitrate; emulsified methylated seed oil; tridecyl alcohol (synthetic) ethoxylate (EO8); tallow amine ethoxylate EO55(PEG) 433(PEG) dioleate-99
.dioleate-99
53 Liquid carriers that can be used include organic solvents and optical fibers. The costs include wireless networks, but they are not limited to the most expensive oil fields.
Mineral oil, such as hydrocarbons or petroleum fractions
aromatic solvents, paraffinic oils and the like; Vegetable oils such as soybean oil, rapeseed oil
55 oil olive oil armor oil castor oil sunflower seed oil coconut oil corn oil cottonseed oil linseed oil palm oil peanut oil safflower oil sesame oil, tung oil, and tung oil; Salt esters are wrapped in vegetable oils such as silica kgfkt art mkfklkvklvklvlvlvlvkt
Polyalcohols, trihydric, dihydric, or monoalcohols 23
Others (which include 4-6 hydroxy) such as 2-ethyl hexyl stearate, 2-ethyl n-butyl oleate, isopropyl myristate, propylene glycol dioleate, then Di-octyl succinate di-butyl adipate
25 di-octyl phthalate and the like; Esterification of mono, di, polycarboxylic acids and the like. Composited photosynthesis includes, but is not limited to, toluene, xylene, petroleum naphtha, crop oil, acetone, methyl ethyl ketone, trichloroethyl cyclohexanone The trichloroethylene is a superoxide dismutase
٤٦١٥
-٤٢-
amyl acetate ethyl acetate perchloroethylene ethyl acetate
Butyl acetate Propylene glycol monomethyl ether Propylene glycol monomethyl ether Diethylene glycol monomethyl ether Diethylene glycol monomethyl ethyl alcohol Ethyl isoalcohol Propime is an amyl alcohol
5 alcohol ethylene glycol propylene glycol glycyrrhine N-methyl-2-pyrrolidinone NN N-methyl-2-pyrrolidinone-dimethyl
dimethyl sulfoxide
Liquid fertilizers and tampers. In soft systems, the passerby is a concentrator dilution carrier.
53 Solid carriers include, but are not limited to, talc and profile clay.
And a bag of kaolin, kaolive clay, attapulgus clay, and silica clay, pyrophyllite clay.
Show kieselguhr, chalk, and diatoms. Show diatomaceous earth, soda lime, calcium carbonate, bentonite clay, and filler. Show.
Fuller's earth
55 Soybean flour, pumice, wood flour, walnut shell flour, lignin, cellulose, and flour.
In particular, the compositions described herein additionally comprise one or more surface-active agents. In the dominance of the costumes, the completion of the surfaces are expanded in the cost of the compositions of the replica and the appropriateness, and in the growth of the laxatives, the designer is done for the work.
23 The country in which you will warm it with a holder. The nonionic agent can be applied to the surfaces: anionic, cationic, or nonionic, and can be applied to surfaces. In the form of an emulsifying agent
suspending or wetting agents or emulsifying agents
Agents or factors that affect the warming land. Surfactants that can be further applied in the formulations are described in McCutcheon's Detergents and Emulsifiers.
25 5998 New Jersey Ridgewood.MC Publishing Corp Annual in Encyclopedia.”
85-5983 New York.Chemical Publishing Co III- I.Vol Surfactants.
It includes surface coatings, but is not limited to alkyl sulfates, such as diethyl ammonium ether diethanolammonium lauryl phytate
٤٦١٥
-٤٣-
sulfate; Alkyl aryl symphonates diethanolammonium lauryl sulfate such as calcium dodecylbenzenesulfonate; Addition products alkylphenol-alkylene oxide such as nonylphenol-C18 ethoxylate; Additive products: Alkymium oxide
tridecyl alcohol - ethoxylate C16 - alcohol-alkylene oxide 5
C16 ethoxylate; Soaps such as sodium stearate; alkylnaphthalene-sulfonate Salt such as sodium dibutylnaphthalenesulfonate; Dialkyl esters from sulfosuccinate salts such as sodium di(2-ethylhexyl) sulfosuccinate 53; sorbitol esters such as sorbitol oleate; quaternary amines quaternary amines such as trilauryl methylammonium chloride; lauryl trimethylammonium chloride; Polyethylene glycol esters from fatty acids, such as polyethylene glycol stearate; Block copolymers 55 mg ethylene oxide and propylene oxide; Works on mono- and dialkyl phosphate esters; Vegetable oils, such as soybean oil, shoulder oil, olive oil, armor oil, sunflower oil Coconut, palm oil, palm oil, palm oil, sandalwood oil, peanut oil, fin oil, sesame oil, meringue oil, and walnut oil Vegetable oils sold in bulk and in dairy products contain 23 methyl esters.
In addition, if the substances such as vegetable oils are consumed and used, they can be used as food. Additives and agriculturally acceptable additives and carriers for liquids or liquids that spread on the surface.
The temporary cost of additions that can be used is included in the installations available there and for you It is not limited to compatibilizing agents and antifoam agents.
Neutralizing agents, sequestering agents, and stabilizing agents 25
pH controls, buffers, corrosion inhibitors, dyes, odorants, spreading agents, penetration aids, sticking agents, dispersing agents, and dispersing agents.
freezing point depressants and freezing point inhibitors thickening agents
٤٦١٥
-٤٤-
And antimicrobial agents and the like. The compositions may also include more compatible components, such as herbicides, plant growth regulants, fungicides, insecticides and the like, which may be formulated or solid particles, fertilizer carriers and ammonium nitrates ammonium nitrate
5 Urea and the like.
In general, the composition contains approximately 3.3335 to 98 percent of the composition of the components described here. Joseph. In Myanmar, the composition contains about 3.3336 to 93% of the weight. In compositions designed to use the concentration of the falafel component in ductile forms it is found in concentrations from about 3.5 to 98% by weight, and in ductile forms it is about
53 3.5 to 93 weight ratio. The assemblies are to be filled in a smooth base with a continuous bearing, just like the joints before.
Use. Push-in formulations are usually used on or near weeds. In soft crops, it consists of a concentration of about 3.3336 to 53.3 weight percentage of the pepper component, and in soft crops it contains about 3.335 to 6.3 weight percentage.
55 Existing formulations can be used on grasses or their grasses by ground or aerial application for surveyors, soils and granular applications, in addition to landfills and fertilizers. Ghar and traditional methods
I know well and have skill in writing.
The following described and illustrated patterns are for illustrative purposes only and are not intended to limit the scope of the protection and protection elements. Variations, usages and combinations of the combinations described here which appear obvious to the art may be made without leaving the spirit and scope of the protective elements.
23
I'm sorry
The results in Amathama III, II, and IV are the results of experiments in the greenhouse.
Example I. Foliar-Applied Sustainability Evaluation Country of emergence of herbicide mixtures for control of 25 directly grown weeds in rice
٤٦١٥
-٤٥-
Seeds of the desired mixture are planted in a soil matrix filled with a mixture of loam and sand (example: 28.6 percent salt, 58.8 percent silt clay). 52.6 percent sand with a pH of about 5.8 and a content of fibrous materials about 5.8 percent. It is compressed at a ratio of 83 to 23, the ratio of the solid matrix is calculated as a thickness of 5 square metres, with a volume of 5 square meters and a surface area of 83.6 square metres. A quarter (sqm).<sup>2</sup>When there is a need to ensure good growth and healthy plants, they require fungicide treatment and/or other chemicals or physical treatment. The plants are grown for 822 days in a greenhouse with a photoperiod Approximate 54 hours which lasts until about 29° The sign of day and 26°C the sign of inclination.<sup>®</sup>5-55Peters Excel-53 55 5- Mg-2Ca and iron chelate, which are used in irrigation systems
When necessary, the pass-through was added on a regular basis. Provide supplementary light above the ground with a 5333-watt metal halide flash above the ground when necessary. Plants are used in the test when they reach a curve, using the true leaf stage as an indication.
The package costs the same as a toilet or bath towel, a package of 4-Amino-3-Kumofuro-5-Fumo-6-4-55 kilograms Ro-2-FamylGulfuro-3-Methoxyphenylphenyl(PyricylGulf-2-Hamdoxycarboxylamino-3-4-amino)
chloro-5-fluoro-6-(4-chloro-2-fluoro-3-methoxy-phenyl)pyridine-2-
Compound A (compound A) is formulated as a suspension concentrate (SC) and components of various herbal ingredients individually and in combination In any alliances, the compound meter was used on an acid equivalent basis.
23 The studied forms of compound A include the compound of formula I:
<img file="SA4615B1_D0011.tif" />
Compound A is an acid
٤٦١٥
-٤٦-
<img file="SA4615B1_D0012.tif" />
Compound A n-butyl ester
<img file="SA4615B1_D0013.tif" />
Compound A benzyl ester
5
Ingredients of herbicides that are based on pepper and include a fine herbicide inhibitor (pendimethalin (MTI). Service: dithiopyr Prowl<sup>®</sup> 3.3EC
Propyzamide Surflan formula<sup>®</sup> SC used as whole oryzalin Dithiopyr WP used as whole
KKerb<sup>®</sup> 50WP, thiazopyr (technical grade material).
53 Processing requirements are calculated based on the calculated factors, the concentration of the folic acid or acid component in the formulation and a 52 ml serving volume at a rate of HA/L587.
For formulations that include formulated compounds and quantities of compounds placed individually in a 25 ml vial and poured into a 5.25% volume (v/v) Dex<sup>®</sup> - Agri crop oil concentrate (COC) for a rolled oil crop × 52 55 The filling solution is prepared by adding an appropriate amount to each packed solution.
(Example: 5 ml) The final concentration is intended to be appropriate when 53 ml of the mixture is added.
٤٦١٥
-٤٧-
5.25% vol/vol (COC) so that the final spray solutions contain 5.25% vol/vol (COC).
For processing that includes technical compounds, the quantities are weighed and placed individually in glass vials of 25 ml and mixed in a volume of 97:3 (volume/volume) acetone/DMSO for a combined working yield 5 million dinars 52× stock solutions. Damuiti and/or Yasfaut.
The sustainability solution is prepared by adding an appropriate amount of each solution mixed (e.g. 5 ml) and results in the appropriate final concentration when 53 ml of mixed solution are added 5.25% volume/volume (COC) so that the final head load contains 5.25% volume / Size (COC). When using technical materials, it is possible to add the centered inserted load to the load
53 Spraying such that the acetane is DMSO with a final concentration of 56.2% and 3.5%, respectively. For the Lagosian language
The formulated technical components include the quantities being weighed and placed individually in a glass container of 25 mg/ml in a volume of 97:3 Volume of DMSO/acetone to obtain a compact solution x 52. Quantities are measured from the compact solution of the formulated compound and placed individually in a glass vial. 25 ml and flow to a volume of 5.5% (v/v) COC (or for a flow yield x 52).
55 If he does not fit the test vehicle well, he will win the Dammit and/or vote. The sustainability report is prepared by Affan
A method of adding an appropriate amount of each mixed solution (for example, 5 ml), which leads to the appropriate final concentration when adding 53 ml of mixed water 5.5% v/v COC so that the final head load contains 5.25% v/v COC .
It may be necessary to add magnesium and/or 97:3 acetodine/DMSO to the individual solutions such that the final concentration of 8.5% and 3.25% acetone is 23 In order.
All mixture solutions are visually checked for compatibility with the compounds before use. The sprayer is applied to plant materials with a Mandel track sprayer on the ground equipped with a spray nozzle of 8332 million hectares to reach 587 ha/L587 over an area of 533 inches - by spraying from a height of 58 to 23 inches or 4653 cm above the average plant canopy height. 25 Control plants are sprayed in the same way with solvent blank.
The domestic plants and control plants are placed in the row and are described in a row and row Consider sub-irrigation to prevent removal of test compounds. After approximately 3 weeks, the conditions of the plants ceased.
٤٦١٥
-٤٨-
Test untreated plants visually on a scale of 3 to 533%, where 3 corresponds to no infection and growth and 533 equals kill.
Colby's formula was used to cover the expected herbicidal effect of RS Colby's formula.
of herbicide and antagonistic response of the synergistic Calculation .5967 .).22-55:23Weeds .combinations 5
The following equations are used to calculate the expected activity of minerals containing the components A and B:
Expected = 533/A x B(B+ A)
A = The observed effectiveness of the facilities available A with the same concentration when used 53 in Dumit.
B= The observed effectiveness of the flavonoid ingredient B at the same concentration when used in Dumit.
The studied compounds, the studied ratios, the studied plant types, and the results are shown in Tables 25-5.
Table 5. The synergistic effect of foliar application of compound A acid and pendimethalin in the formulation of pesticide antagonist 55 on weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">Al-Alfa</p><p>Visual Weed Herbs</p><p>DAA59 (%) Control</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>DIGSA</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>33</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr>
٤٦١٥
-٤٩-
<tr><td><p>33</p></td><td><p>53</p></td><td><p>543</p></td><td><p>4.38</p></td></tr><tr><td><p>33</p></td><td><p>45</p></td><td><p>283</p></td><td><p>4.38</p></td></tr>
<tr><td colspan="2"><p dir="rtl">Herbs (%) DAA59</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>ECHCG</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>63</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>63</p></td><td><p>83</p></td><td><p>543</p></td><td><p>4.38</p></td></tr><tr><td><p>63</p></td><td><p>85</p></td><td><p>283</p></td><td><p>4.38</p></td></tr><tr><td><p>64</p></td><td><p>95</p></td><td><p>563</p></td><td><p>4.38</p></td></tr>
<tr><td colspan="2"><p dir="rtl">Herbs (%) DAA59</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr>
٤٦١٥
-٥٠-
<tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>3</p></td><td><p>55</p></td><td><p>543</p></td><td><p>4.38</p></td></tr><tr><td><p>53</p></td><td><p>55</p></td><td><p>543</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>23</p></td><td><p>283</p></td><td><p>4.38</p></td></tr><tr><td><p>53</p></td><td><p>25</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>55</p></td><td><p>563</p></td><td><p>4.38</p></td></tr><tr><td><p>53</p></td><td><p>23</p></td><td><p>563</p></td><td><p>8.75</p></td></tr>
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>45</p></td><td><p>3</p></td><td><p>35</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>52</p></td><td><p>73</p></td><td><p>5523</p></td><td><p>35</p></td></tr>
Table 2. The synergistic effect of the foliar application of compound A and Pendimethalin in the pesticide formulation on weeds in the Rice Cropping System.
<tr><td><p dir="rtl">Al-Gal-G-G-G-G-G-KG</p><p dir="rtl">I love you (%) 59</p><p>DAA</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td><p>DIGSA</p></td><td></td><td></td></tr>
٤٦١٥
-٥١-
<tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>35</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td></td><td><p>53</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>35</p></td><td><p>45</p></td><td><p>543</p></td><td><p>4.38</p></td></tr><tr><td><p>53</p></td><td><p>53</p></td><td><p>543</p></td><td><p>8.75</p></td></tr><tr><td><p>35</p></td><td><p>53</p></td><td><p>283</p></td><td><p>4.38</p></td></tr><tr><td><p>53</p></td><td><p>73</p></td><td><p>283</p></td><td><p>8.75</p></td></tr>
<tr><td colspan="6"><p dir="rtl">Visual control of herbs (%) DAA59</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td colspan="2"><p>ECHCO</p></td><td colspan="2"><p>ECHCG</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>65</p></td><td><p>-</p></td><td><p>55</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>93</p></td><td><p>-</p></td><td><p>85</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>53</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>3</p></td><td><p>25</p></td><td><p>65</p></td><td><p>85</p></td><td><p>55</p></td><td><p>75</p></td><td><p>543</p></td><td><p>4.38</p></td></tr><tr><td><p>3</p></td><td><p>53</p></td><td><p>93</p></td><td><p>95</p></td><td><p>85</p></td><td><p>93</p></td><td><p>543</p></td><td><p>8.75</p></td></tr>
٤٦١٥
-٥٢-
<tr><td><p>3</p></td><td><p>55</p></td><td><p>65</p></td><td><p>93</p></td><td><p>55</p></td><td><p>85</p></td><td><p>283</p></td><td><p>4.38</p></td></tr><tr><td><p>3</p></td><td><p>25</p></td><td><p>93</p></td><td><p>95</p></td><td><p>85</p></td><td><p>95</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>53</p></td><td><p>65</p></td><td><p>93</p></td><td><p>63</p></td><td><p>93</p></td><td><p>563</p></td><td><p>4.38</p></td></tr><tr><td><p>3</p></td><td><p>55</p></td><td><p>93</p></td><td><p>95</p></td><td><p>87</p></td><td><p>95</p></td><td><p>563</p></td><td><p>8.75</p></td></tr>
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA59</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>LEFCH</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>33</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>83</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>3</p></td><td><p>23</p></td><td><p>543</p></td><td><p>4.38</p></td></tr><tr><td><p>25</p></td><td><p>43</p></td><td><p>543</p></td><td><p>8.75</p></td></tr><tr><td><p>33</p></td><td><p>53</p></td><td><p>543</p></td><td><p>57.5</p></td></tr><tr><td><p>23</p></td><td><p>45</p></td><td><p>283</p></td><td><p>4.38</p></td></tr><tr><td><p>43</p></td><td><p>65</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>44</p></td><td><p>85</p></td><td><p>283</p></td><td><p>57.5</p></td></tr>
٤٦١٥
-٥٣-
<tr><td><p>83</p></td><td><p>85</p></td><td><p>563</p></td><td><p>4.38</p></td></tr><tr><td><p>85</p></td><td><p>93</p></td><td><p>563</p></td><td><p>8.75</p></td></tr><tr><td><p>86</p></td><td><p>99</p></td><td><p>563</p></td><td><p>57.5</p></td></tr>
Table 3. The synergistic effect of the foliar application of compound A and pendimethalin in the pesticide formulation on weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckfull A n-butyl ester</p></td></tr><tr><td colspan="2"><p>ECHCG</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>45</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>73</p></td><td><p>3</p></td><td><p>35</p></td></tr><tr><td></td><td><p>58</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>55</p></td><td><p>93</p></td><td><p>5523</p></td><td><p>57.5</p></td></tr><tr><td><p>75</p></td><td><p>99</p></td><td><p>5523</p></td><td><p>35</p></td></tr>
<tr><td colspan="2"><p dir="rtl">The most important thing in the world</p><p dir="rtl">I love you (%) 25</p><p>DAA</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckfull B-Butyl Ester</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td></td><td><p>43</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>5523</p></td><td><p>3</p></td></tr>
٤٦١٥
-٥٤-
<tr><td><p>48</p></td><td><p>63</p></td><td><p>5523</p></td><td><p>57.5</p></td></tr>
Table 4. The synergistic effect of the compound foliar application of acid and Dithiopyr in the formulation of pesticide antibiotic Weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA25</p></td><td><p>Dithiopyr</p></td><td><p dir="rtl">Merckfull Acid</p></td></tr><tr><td colspan="2"><p>BRAPP</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>63</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>35</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>73</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>63</p></td><td><p>93</p></td><td><p>35</p></td><td><p>8.75</p></td></tr><tr><td><p>63</p></td><td><p>75</p></td><td><p>73</p></td><td><p>8.75</p></td></tr><tr><td><p>63</p></td><td><p>93</p></td><td><p>543</p></td><td><p>8.75</p></td></tr>
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA25</p></td><td><p>Dithiopyr</p></td><td><p dir="rtl">Merckfull Acid</p></td></tr><tr><td colspan="2"><p>ECHCO</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>63</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>93</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>35</p></td><td><p>3</p></td></tr>
٤٦١٥
-٥٥-
<tr><td><p>-</p></td><td><p>3</p></td><td><p>73</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>63</p></td><td><p>93</p></td><td><p>35</p></td><td><p>4.38</p></td></tr><tr><td><p>93</p></td><td><p>95</p></td><td><p>35</p></td><td><p>8.75</p></td></tr><tr><td><p>63</p></td><td><p>95</p></td><td><p>73</p></td><td><p>4.38</p></td></tr><tr><td><p>93</p></td><td><p>95</p></td><td><p>73</p></td><td><p>8.75</p></td></tr><tr><td><p>63</p></td><td><p>95</p></td><td><p>543</p></td><td><p>4.38</p></td></tr><tr><td><p>93</p></td><td><p>95</p></td><td><p>543</p></td><td><p>8.75</p></td></tr>
Table 5. The synergistic effect of foliar application of compound A benzyl ester and Dithiopyr in the formulation of pesticide additive on weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA25</p></td><td><p>Dithiopyr</p></td><td><p dir="rtl">MERCOLOGY AB Benzyl Ester</p></td></tr><tr><td colspan="2"><p>BRAPP</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>73</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>35</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>73</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>73</p></td><td><p>75</p></td><td><p>35</p></td><td><p>4.38</p></td></tr><tr><td><p>73</p></td><td><p>85</p></td><td><p>73</p></td><td><p>4.38</p></td></tr>
٤٦١٥
-٥٦-
<tr><td><p>73</p></td><td><p>85</p></td><td><p>543</p></td><td><p>4.38</p></td></tr>
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA25</p></td><td><p>Dithiopyr</p></td><td><p dir="rtl">MERCOLOGY AB Benzyl Ester</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td></td><td><p>53</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>35</p></td><td><p>3</p></td></tr><tr><td><p>59</p></td><td><p>23</p></td><td><p>35</p></td><td><p>4.38</p></td></tr><tr><td><p>59</p></td><td><p>35</p></td><td><p>35</p></td><td><p>8.75</p></td></tr><tr><td><p>33</p></td><td><p>45</p></td><td><p>35</p></td><td><p>57.5</p></td></tr>
Table 6. The synergistic effect of the compound foliar acid and Oryzalin in the pesticide additive formulation on weeds in the rice crop system.
5
<tr><td colspan="2"><p dir="rtl">Herbs (%) DAA23</p></td><td><p>Oryzalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>CYPES</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>5.3</p></td></tr><tr><td><p>-</p></td><td><p>93</p></td><td><p>3</p></td><td><p>53.6</p></td></tr>
٤٦١٥
-٥٧-
<tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>3</p></td><td><p>75</p></td><td><p>283</p></td><td><p>5.3</p></td></tr><tr><td><p>93</p></td><td><p>95</p></td><td><p>283</p></td><td><p>53.6</p></td></tr><tr><td><p>3</p></td><td><p>23</p></td><td><p>563</p></td><td><p>5.3</p></td></tr><tr><td><p>93</p></td><td><p>533</p></td><td><p>563</p></td><td><p>53.6</p></td></tr><tr><td><p>3</p></td><td><p>53</p></td><td><p>5523</p></td><td><p>5.3</p></td></tr><tr><td><p>93</p></td><td><p>533</p></td><td><p>5523</p></td><td><p>53.6</p></td></tr>
<tr><td colspan="4"><p dir="rtl">Visual control of herbs (%) 23</p><p>DAA</p></td><td><p>Oryzalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>SCPJU</p></td><td colspan="2"><p>CYPDI</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>-</p></td><td><p>83</p></td><td><p>3</p></td><td><p>5.3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>25</p></td><td><p>95</p></td><td><p>83</p></td><td><p>93</p></td><td><p>283</p></td><td><p>5.3</p></td></tr><tr><td><p>25</p></td><td><p>99</p></td><td><p>83</p></td><td><p>95</p></td><td><p>563</p></td><td><p>5.3</p></td></tr><tr><td><p>25</p></td><td><p>99</p></td><td><p>83</p></td><td><p>95</p></td><td><p>5523</p></td><td><p>5.3</p></td></tr>
٤٦١٥
-٥٨-
Table 7. The synergistic effect of the foliar application of compound A benzyl ester and Oryzalin in an anti-herbicide formulation on weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">Visual control of herbs</p><p>DAA23 (%)</p></td><td><p>Oryzalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>ECHCG</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td></td><td><p>73</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>55</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>43</p></td><td><p>55</p></td><td><p>283</p></td><td><p>4.38</p></td></tr><tr><td><p>73</p></td><td><p>75</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>46</p></td><td><p>65</p></td><td><p>563</p></td><td><p>4.38</p></td></tr><tr><td><p>73</p></td><td><p>85</p></td><td><p>563</p></td><td><p>8.75</p></td></tr><tr><td><p>49</p></td><td><p>65</p></td><td><p>5523</p></td><td><p>4.38</p></td></tr><tr><td><p>75</p></td><td><p>83</p></td><td><p>5523</p></td><td><p>8.75</p></td></tr>
<tr><td><p dir="rtl">Herbal control (%) DAA 23</p></td><td><p>Oryzalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr>
٤٦١٥
-٥٩-
<tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td></td><td><p>55</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>24</p></td><td><p>43</p></td><td><p>5523</p></td><td><p>8.75</p></td></tr><tr><td><p>36</p></td><td><p>53</p></td><td><p>5523</p></td><td><p>57.5</p></td></tr>
Table 8. The synergistic effect of the foliar application of compound A and propyzamide in the pesticide formulation on weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">Wargoo</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>3</p></td><td><p>8</p></td></tr><tr><td><p>-</p></td><td><p>35</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>73</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>25</p></td><td><p>NT</p></td><td><p>73</p></td><td><p>8</p></td></tr><tr><td><p>35</p></td><td><p>73</p></td><td><p>73</p></td><td><p>56</p></td></tr>
٤٦١٥
-٦٠-
<tr><td><p>43</p></td><td><p>63</p></td><td><p>73</p></td><td><p>32</p></td></tr><tr><td><p>25</p></td><td><p>63</p></td><td><p>543</p></td><td><p>8</p></td></tr><tr><td><p>35</p></td><td><p>63</p></td><td><p>543</p></td><td><p>56</p></td></tr><tr><td><p>43</p></td><td><p>65</p></td><td><p>543</p></td><td><p>32</p></td></tr><tr><td><p>25</p></td><td><p>33</p></td><td><p>283</p></td><td><p>8</p></td></tr><tr><td><p>35</p></td><td><p>35</p></td><td><p>283</p></td><td><p>56</p></td></tr><tr><td><p>43</p></td><td><p>65</p></td><td><p>283</p></td><td><p>32</p></td></tr>
Table 9. The synergistic effect of the foliar application of compound A benzyl ester and propyzamide in the anti-herbicide formulation on weeds in the rice crop system.
<tr><td colspan="2"><p dir="rtl">Herbs (%) DAA22</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>8</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>35</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td></td><td><p>3</p></td><td><p>73</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>53</p></td><td><p>23</p></td><td><p>73</p></td><td><p>8</p></td></tr>
٤٦١٥
-٦١-
<tr><td><p>53</p></td><td><p>23</p></td><td><p>73</p></td><td><p>56</p></td></tr><tr><td><p>35</p></td><td><p>53</p></td><td><p>73</p></td><td><p>32</p></td></tr><tr><td><p>53</p></td><td><p>23</p></td><td><p>543</p></td><td><p>8</p></td></tr><tr><td><p>53</p></td><td><p>23</p></td><td><p>543</p></td><td><p>56</p></td></tr><tr><td><p>35</p></td><td><p>53</p></td><td><p>543</p></td><td><p>32</p></td></tr><tr><td><p>53</p></td><td><p>53</p></td><td><p>283</p></td><td><p>8</p></td></tr><tr><td><p>53</p></td><td><p>53</p></td><td><p>283</p></td><td><p>56</p></td></tr><tr><td><p>35</p></td><td><p>85</p></td><td><p>283</p></td><td><p>32</p></td></tr>
Table 53. The synergistic effect of the foliar application of acid and thiazopyr in the pesticide additive formulation on weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA23</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>3</p></td><td><p>8</p></td></tr><tr><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>43</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>52</p></td><td><p>75</p></td><td><p>283</p></td><td><p>8</p></td></tr><tr><td><p>64</p></td><td><p>73</p></td><td><p>283</p></td><td><p>56</p></td></tr>
٤٦١٥
-٦٢-
<tr><td><p>signalgrass, broadleaf</p></td><td><p>Brachiaria platyphylla (Griseb.) Nash</p></td><td><p>BRAPP</p></td><td></td></tr><tr><td><p>nutsedge yellow</p></td><td><p>Cyperus esculentus L.</p></td><td><p>CYPES</p></td><td></td></tr><tr><td><p>sedge smallflower umbrella</p></td><td><p>Cyperus difformis L.</p></td><td><p>CYPDI</p></td><td></td></tr><tr><td><p>crabgrass large</p></td><td><p>Digitaria sanguinalis (L.) Scop.</p></td><td><p>DIGSA</p></td><td></td></tr><tr><td><p>barnyardgrass</p></td><td><p>Echinochloa crusgalli (L.) Beauv.</p></td><td><p>ECHCG</p></td><td><p>5</p></td></tr><tr><td><p>junglerice</p></td><td><p>Echinochloa colona (L.) Link</p></td><td><p>ECHCO</p></td><td></td></tr><tr><td><p>morningglory, ivyleaf</p></td><td><p>Ipomoea hederacea Jacq.</p></td><td><p>IPOHE</p></td><td></td></tr><tr><td><p>sprangle top, Chinese</p></td><td><p>Leptochloa chinensis (L.) Nees</p></td><td><p>LEFCH</p></td><td></td></tr><tr><td><p>bulrush, Japanese</p></td><td><p>Schoenoplectus juncoides (Roxb.) Palla</p></td><td><p>SCPJU</p></td><td></td></tr><tr><td></td><td colspan="2"><p dir="rtl">= NT is not controlled</p></td><td><p>53</p></td></tr>
ha/g ae = g macafe acid per hectare
ha/g ai = EGP per hectare
Obs = observed value
55 Exp = expected value from the calculation using Kolbe's equation
Days after application: After spraying =DAA
Example II. Evaluation of the use in places of herbicide medicaments for the control of weeds in rice.
Transplanted Paddy Rice
23 It is planted with herbs or plants desired for testing in clay soil (loam) prepared with organic mineral soil, shredded, non-fertilized, 53.5 percent salt, 25.5 percent silt and 24 percent sand, with a pH of about 7.6 and a water content. Wadi Al-Dhawiyyah, about 2.9% It is mixed with a volumetric ratio of 5:5. Place 365 ml of the prepared spectrum in 56 ounce (oz.) drops in perforated, non-plastic containers with a surface area of 86.59 square centimetres.
25 (cm) Leave a plot area of 3 cm (cm) in each plot and allow the clay to dry along the mile until the plants are transferred or planted. Rice plants are planted in mixed crops.<sup>®</sup>336Sun Gro MetroMix and...
٤٦١٥
-٦٣-
It has a growth rate of pH from 6.3 to 6.8, and its fiber content is about 33% in closed racks. The seeds are grown until the second or third true leaf stage of growth, then they are transferred to 863 ml plants containing 32 ounces of perforated plastic containers with a surface area of 86.59 cm 4 days before applying the herbicide. The soil is submerged according to the surface area of the pot from 2.5 to 3.5 cm.
When there is a need to ensure good growth and healthy plants, fungi and/or lesser chemicals are used, or physical treatments are used. Plants grow for 8-22 days in the greenhouse, with an approximate 54-hour photoperiod that lasts up to about 29°C daylight and 26°C inclination. I added the motives in the picture<sup>®</sup>K:P:N 59:6:52 (Osmocote+ micronutrients) at 2 g for each 56-oz. sugar and 4 53 g for each 32-oz. sugar. Add the additives on a regular basis. Provide supplements on top of the ingredients In the Haliday Bank, there is a folder above Thousands of people 5333 watts, if necessary. Plants are used for consideration when they reach the curve that indicates the true leaf or the palm.
The towels cost the same as a towel or bath towel, 4-aminochloro-3-kmkg-2-5-kmkg-6-4-amylchloro-2-mm. Gluoro-3-methoxyphenyl (pyrifidyl-2-carboxylic acid) (compound A) Kl 55 is formulated in... Form of SC (concentrate compound) and multiple herbicide components alone and in combinations.
Images of compound A were prepared on an acidic basis.
The studied forms of compound A include the compound of formula I:
<img file="SA4615B1_D0014.tif" />
Compound A is an acid
23
٤٦١٥
-٦٤-
<img file="SA4615B1_D0015.tif" />
Compound A n-butyl ester
<img file="SA4615B1_D0016.tif" />
Compound A benzyl ester
Ingredients of herbicides that are based on pepper and include a fine herbicide inhibitor (pendimethalin (MTI). Service: dithiopyr Prowl<sup>®</sup> 3.3EC
Propyzamide Surflan formula<sup>®</sup> SC used as whole oryzalin Dithiopyr WP used as whole
KKerb<sup>®</sup> 50WP, thiazopyr (technical grade material).
53 The treatment requirements for each herbicidal compound or ingredient are calculated based on the testing rates for the concentration of the pepper or sorrel ingredient in the formulation, and the application volume is 2 ml of each ingredient. Each unit has a sustainability area of 86.59 cm per unit.
For formulation compounds, the measured quantity is placed in a single glass vial of 533 and 233 ml of water in a volume of 5.25% (volume/volume) compound. False yield of Dex<sup>®</sup>-Agri is a portable labor yield. And lulu llam 55 y b the test compound well, so it pronounces or votes.
٤٦١٥
-٦٥-
Technical grade compounds are divided and the measured quantity is placed in a single glass vial of 533 and 233 ml and 233 ml each. It is used as a result of the work of a stamped loader. If he does not implement the component of thinking well, he votes or votes.
The centered thrust bearing, which is obtained, is filled with a volume of 5 million meters of water in Damascus, which it contains 2.5%) Concentration yield is falsified so that the final concentration of the concentrated load is
Durable 5.25% v/v (concentrated crop oil).
It is used by injection with a measure of suitable quantities of liquid transported in the submersible aquifer. Control plants are injected in the same way with a mobile phone. All plants receive the same treatment and concentration of acetone and plant oil concentrate.
53 Mulch and control plants are placed in the greenhouse as well as watered and irrigated to prevent the removal of control compounds. After approximately 3 weeks, the conditions of the control plants compare visually to untreated plants on a scale from 3 to 533%, where 3 corresponds to no infection and growth and 533 equals kill.
Colby's formula was used to cover the expected herbicidal effect of RS Colby's formula.
of herbicide and antagonistic response of the synergistic Calculation.5967 55
22-55:23Weeds.combinations
The following equations are used to calculate the expected activity of minerals containing the components A and B:
Expected = 533/A x B(B+ A)
23 A = the observed effectiveness of the flavonoid ingredient A at the same concentration during its use in Dumit.
B= The observed effectiveness of the flavonoid ingredient B at the same concentration when used in Dumit.
Please describe the studied compounds, indications for use, types of studied plants, and results in Tables 55-57.
٤٦١٥
-٦٦-
Table 55. The synergistic effect in the use of carbohydrates in the compound Acid Pendimethalin is an antioxidant formulation Pesticides on weeds in a rice crop system.
<tr><td colspan="2"><p dir="rtl">DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>ECHCG</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td></td><td><p>3</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>3</p></td><td><p>35</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>23</p></td><td><p>53</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>23</p></td><td><p>63</p></td><td><p>283</p></td><td><p>57.5</p></td></tr><tr><td><p>36</p></td><td><p>63</p></td><td><p>283</p></td><td><p>35</p></td></tr><tr><td><p>3</p></td><td><p>55</p></td><td><p>563</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>533</p></td><td><p>563</p></td><td><p>57.5</p></td></tr><tr><td><p>23</p></td><td><p>43</p></td><td><p>563</p></td><td><p>35</p></td></tr>
<tr><td><p dir="rtl">Herbal control (%) DAA 25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td><p>LEFCH</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr>
٤٦١٥
-٦٧-
<tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>33</p></td><td><p>3</p></td><td><p>35</p></td></tr><tr><td><p>-</p></td><td><p>43</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>43</p></td><td><p>53</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>43</p></td><td><p>533</p></td><td><p>283</p></td><td><p>57.5</p></td></tr><tr><td><p>58</p></td><td><p>533</p></td><td><p>283</p></td><td><p>35</p></td></tr>
Table 52. The synergistic effect of benzyl ester and pendimethalin in the anti-pesticide formulation on weeds in the rice crop system.
<tr><td colspan="2"><p dir="rtl">DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">MERCOLOGY AB Benzyl Ester</p></td></tr><tr><td colspan="2"><p>ECHCG</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>23</p></td><td><p>43</p></td><td><p>283</p></td><td><p>4.38</p></td></tr><tr><td><p>23</p></td><td><p>35</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>43</p></td><td><p>33</p></td><td><p>283</p></td><td><p>57.5</p></td></tr>
٤٦١٥
-٦٨-
<tr><td><p>3</p></td><td><p>95</p></td><td><p>563</p></td><td><p>4.38</p></td></tr><tr><td><p>3</p></td><td><p>53</p></td><td><p>563</p></td><td><p>8.75</p></td></tr><tr><td><p>25</p></td><td><p>95</p></td><td><p>563</p></td><td><p>57.5</p></td></tr>
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">MERCOLOGY AB Benzyl Ester</p></td></tr><tr><td colspan="2"><p>CYPRO</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>3</p></td><td><p>23</p></td><td><p>283</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>23</p></td><td><p>283</p></td><td><p>57.5</p></td></tr><tr><td><p>3</p></td><td><p>43</p></td><td><p>563</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>53</p></td><td><p>563</p></td><td><p>57.5</p></td></tr>
<tr><td colspan="2"><p dir="rtl">DAA25 (%)</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">MERCOLOGY AB Benzyl Ester</p></td></tr><tr><td colspan="2"><p>SCPMA</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>4.38</p></td></tr>
٤٦١٥
-٦٩-
<tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>3</p></td><td><p>95</p></td><td><p>563</p></td><td><p>4.38</p></td></tr><tr><td><p>3</p></td><td><p>43</p></td><td><p>563</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>53</p></td><td><p>563</p></td><td><p>57.5</p></td></tr>
<tr><td colspan="2"><p dir="rtl">DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">MERCOLOGY Benzyl Ester</p></td></tr><tr><td colspan="2"><p>LEFCH</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>35</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>73</p></td></tr><tr><td><p>-</p></td><td><p>48</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>74</p></td><td><p>78</p></td><td><p>5523</p></td><td><p>35</p></td></tr><tr><td><p>74</p></td><td><p>92</p></td><td><p>5523</p></td><td><p>73</p></td></tr>
Table 53. The impact of the synergistic energy on the financial sector A compound called n-butyric acid and pendimethalin in an anti-herbicide formulation in an rice crop system.
<tr><td><p dir="rtl">Herbal control (%) DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">The compound is an n-butyl ester</p></td></tr><tr><td><p>LEFCH</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr>
٤٦١٥
-٧٠-
<tr><td><p>-</p></td><td><p>8</p></td><td><p>3</p></td><td><p>35</p></td></tr><tr><td><p>-</p></td><td><p>38</p></td><td><p>3</p></td><td><p>73</p></td></tr><tr><td><p>-</p></td><td><p>48</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>55</p></td><td><p>65</p></td><td><p>5523</p></td><td><p>35</p></td></tr><tr><td><p>67</p></td><td><p>78</p></td><td><p>5523</p></td><td><p>73</p></td></tr>
Table 54. The synergistic effect on the effectiveness of compound A acid and Dithiopyr in the anti-herbicide formulation on weeds in a rice crop system.
<tr><td colspan="4"><p dir="rtl">Visual control of herbs (%) 25</p><p>DAA</p></td><td><p>Dithiopyr</p></td><td><p dir="rtl">Merckfull Acid</p></td></tr><tr><td colspan="2"><p>SCPMA</p></td><td colspan="2"><p>ECHOR</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td></td><td><p>3</p></td><td></td><td><p>53</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>35</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>33</p></td><td><p>73</p></td><td><p>3</p></td></tr><tr><td><p>3</p></td><td><p>53</p></td><td><p>37</p></td><td><p>43</p></td><td><p>73</p></td><td><p>8.75</p></td></tr><tr><td><p>3</p></td><td><p>533</p></td><td><p>58</p></td><td><p>533</p></td><td><p>73</p></td><td><p>57.5</p></td></tr><tr><td><p>3</p></td><td><p>533</p></td><td><p>58</p></td><td><p>533</p></td><td><p>73</p></td><td><p>35</p></td></tr>
5 Table 55. The synergistic effect of benzyl ester and Dithiopyr in the anti-pesticide formulation on weeds in the rice crop system.
٤٦١٥
-٧١-
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA 25</p></td><td><p>Dithiopyr</p></td><td><p dir="rtl">MERCOLOGY AB Benzyl Ester</p></td></tr><tr><td colspan="2"><p>ECHOR</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>63</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>75</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>33</p></td><td><p>73</p></td><td><p>3</p></td></tr><tr><td><p>58</p></td><td><p>93</p></td><td><p>73</p></td><td><p>4.38</p></td></tr><tr><td><p>72</p></td><td><p>73</p></td><td><p>73</p></td><td><p>8.75</p></td></tr><tr><td><p>83</p></td><td><p>99</p></td><td><p>73</p></td><td><p>57.5</p></td></tr>
Table 56. The synergistic effect on the use of sulfuric acid and Oryzalin in the anti-pesticide formulation on weeds in the rice crop system.
<tr><td colspan="2"><p dir="rtl">Herbs (%) DAA23</p></td><td><p>Oryzalin</p></td><td><p dir="rtl">Merckal Acid</p></td></tr><tr><td colspan="2"><p>CYPRO</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>53.6</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>3</p></td><td><p>25.2</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>5523</p></td><td><p>3</p></td></tr>
٤٦١٥
-٧٢-
<tr><td><p>53</p></td><td><p>53</p></td><td><p>563</p></td><td><p>53.6</p></td></tr><tr><td><p>23</p></td><td><p>53</p></td><td><p>563</p></td><td><p>25.2</p></td></tr><tr><td><p>53</p></td><td><p>53</p></td><td><p>5523</p></td><td><p>53.6</p></td></tr><tr><td><p>23</p></td><td><p>93</p></td><td><p>5523</p></td><td><p>25.2</p></td></tr>
Table 57. The synergistic effect in the use of the compound in the compound A benzyl ester and Oryzalin in the anti-pesticide formulation on weeds in a cropping system I prefer.
<tr><td colspan="2"><p dir="rtl">Herbs (%) DAA23</p></td><td><p>Oryzalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>CYPRO</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>4.38</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>8.75</p></td></tr><tr><td><p>-</p></td><td><p>93</p></td><td><p>3</p></td><td><p>57.5</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>53</p></td><td><p>83</p></td><td><p>563</p></td><td><p>4.38</p></td></tr><tr><td><p>3</p></td><td><p>85</p></td><td><p>563</p></td><td><p>8.75</p></td></tr><tr><td><p>93</p></td><td><p>93</p></td><td><p>563</p></td><td><p>57.5</p></td></tr>
Cyperus rotundus L. CYPRO
Echinochloa crus-galli (L.) Beauv. ECHCG
nutsedge, purple
barnyardgrass
٤٦١٥
-٧٣-
<tr><td><p>watergrass, early</p></td><td><p>Echinochloa oryzoides (Ard.) Fritsch</p></td><td><p>ECHOR</p></td></tr><tr><td><p>sprangle top, Chinese</p></td><td><p>Leptochloa chinensis (L.) Nees</p></td><td><p>LEFCH</p></td></tr><tr><td><p>sea club rush,</p></td><td><p>Schoenoplectus maritimes (L.) Lye</p></td><td><p>SCPMA</p></td></tr>
ha/g ae = g macafe acid per hectare
5 ha/g ai = EGP per hectare
Obs = observed value
Exp = the expected value calculated using the Kolbe equation
DAA = fatigue after spraying
Example III. Sustainability assessment Country of introduction of herbicide mixtures for control of cereal crops in 53 greenhouses.
Planted with seeds of plants for the desired management of agricultural land<sup>®</sup>336Sun Gro MetroMix and Y
Grows with a pH of 6.3 to 6.8 and a content of soluble substances of about 33% in a container with a surface area of 533.2 square centimetres.<sup>2</sup>When there is a need to ensure good growth and healthy plants that support fungi and/or other chemicals or require physical control. Plants are grown for 7-36 55 days in the greenhouse with a period of approx. 54 hours, which lasts until about 58°C.
The sign of the day and about 57°C the sign of the inclination. The terms and conditions are added on a regular basis. Provide a supplementary supply above the beds with a halide flash for a 5333-watt power supply above the beds when necessary. Plants are continued in the test when they reach a curve, using the sign of the second and third real leaf.
The formula consists of the benzyl ester of 4-amino-3-chalamoro-5-chalamoro-6-4-chalamoro-2-23-chalamoro-3-methoxyphenyl (Pyridulfide-2-carboxymic acid (compound A) kal
Formulated as SC (concentrated compound) and compound herbicide components alone and in conjugates.
Images of compound A were prepared on an acidic basis.
The studied forms of compound A include the compound of formula I:
٤٦١٥
-٧٤-
<img file="SA4615B1_D0017.tif" />
Compound A benzyl ester
Ingredients of other herbicides that use the basis of the pepper ingredient and include herbicides that contain protoporphyrinogen oxidase inhibitors.
5 Measured withdrawals of benzyl ester from 4-amino-3-chamoro-5-chamoro-6-(4-chamoro-2-)
Pyrimido-3-methoxyphenyl(Pyridyl-2-carboxylic acid (compound A)) was placed in a 25 ml glass vial and rolled to a volume of 5.25% v/v (Dex).<sup>®</sup> - Agri-concentrated crop oil obtained on a greased solution. The required compounds are based on 52 ml for a volume and consumption rate of 587 liters per hectare (ha/L). Spraying solutions of the second cereal weedicides and mixtures of the experimental compounds 53 were prepared by adding a mixed load of an appropriate amount of the loading load to make a spray load of 52 ml ــــــــــــــــــــــــــل
It has two villa components and three union methods.
All mixture solutions are visually checked for compatibility with the compounds before use. The spray nozzle is applied to plant materials with a Mandel track nozzle on top of the nozzle equipped with a 8332 nozzle to deliver the work An area of 533 cm, with a height of 58 to 23 inches, or 46-53 cm above 55 average plant height. Control plants are sprayed in the same way.
Plants that are planted and transplanted into the greenhouse are placed in the greenhouse and watered with irrigation methods to prevent the removal of the control compounds. After approximately 3 weeks, the conditions of the control plants compare visually to untreated plants on a scale from 3 to 533%, where 3 corresponds to no infection and growth and 533 equals kill.
23 Colby's formula was used to cover the expected herbicidal effect of RS Colby's formula.
of herbicide and antagonistic response of the synergistic Calculation.5967).22-55:23Weeds.combinations.
٤٦١٥
-٧٥-
The following equations are used to calculate the expected activity of minerals containing the components A and B:
Expected = 533/A x B(B+ A)
A = the observed effectiveness of the flavonoid ingredient A at the same concentration during its use in Dumit.
5 B= The observed effectiveness of the flavonoid ingredient B at the same concentration when used in Dumit.
The studied compounds, the studied proportions, the studied plant types, and the results are listed in Table 58.
Table 58. The synergistic effect of the foliar compound A, benzyl benzyl compound, and pendimethalin in the formulation of an anti-herbicide formulation on weeds in grain crop systems.
53
<tr><td colspan="6"><p dir="rtl">Visual control of herbs (%) DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>SINAR</p></td><td colspan="2"><p>CHEAL</p></td><td colspan="2"><p>AMARE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ai/ha</p></td></tr><tr><td><p>-</p></td><td><p>73</p></td><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>23</p></td><td><p>3</p></td><td><p>2.5</p></td></tr><tr><td><p>-</p></td><td><p>73</p></td><td><p>-</p></td><td><p>58</p></td><td><p>-</p></td><td><p>38</p></td><td><p>3</p></td><td><p>5</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>553</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>5</p></td><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>5</p></td><td><p>333</p></td><td><p>3</p></td></tr><tr><td><p>75</p></td><td><p>83</p></td><td><p>53</p></td><td><p>73</p></td><td><p>22</p></td><td><p>33</p></td><td><p>553</p></td><td><p>2.5</p></td></tr><tr><td><p>72</p></td><td><p>93</p></td><td><p>53</p></td><td><p>78</p></td><td><p>24</p></td><td><p>33</p></td><td><p>333</p></td><td><p>2.5</p></td></tr><tr><td><p>73</p></td><td><p>92</p></td><td><p>58</p></td><td><p>83</p></td><td><p>39</p></td><td><p>48</p></td><td><p>553</p></td><td><p>5</p></td></tr><tr><td><p>74</p></td><td><p>89</p></td><td><p>58</p></td><td><p>83</p></td><td><p>45</p></td><td><p>43</p></td><td><p>333</p></td><td><p>5</p></td></tr>
٤٦١٥
-٧٦-
<tr><td colspan="6"><p dir="rtl">Visual control of herbs (%) DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Compound A is a benzyl ester</p></td></tr><tr><td colspan="2"><p>KCHSC</p></td><td colspan="2"><p>CIRAR</p></td><td colspan="2"><p>BRSNW</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ai/ha</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>-</p></td><td><p>48</p></td><td><p>-</p></td><td><p>58</p></td><td><p>3</p></td><td><p>2.5</p></td></tr><tr><td><p>-</p></td><td><p>45</p></td><td><p>-</p></td><td><p>39</p></td><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>5</p></td></tr><tr><td><p>-</p></td><td><p>62</p></td><td><p>-</p></td><td><p>63</p></td><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>53</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>3</p></td><td><p>553</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>5</p></td><td><p>333</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>57</p></td><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>58</p></td><td><p>633</p></td><td><p>3</p></td></tr><tr><td><p>28</p></td><td><p>63</p></td><td><p>53</p></td><td><p>48</p></td><td><p>23</p></td><td><p>33</p></td><td><p>553</p></td><td><p>2.5</p></td></tr><tr><td><p>28</p></td><td><p>78</p></td><td><p>53</p></td><td><p>63</p></td><td><p>22</p></td><td><p>48</p></td><td><p>333</p></td><td><p>2.5</p></td></tr><tr><td><p>47</p></td><td><p>55</p></td><td><p>45</p></td><td><p>68</p></td><td><p>55</p></td><td><p>38</p></td><td><p>553</p></td><td><p>5</p></td></tr><tr><td><p>47</p></td><td><p>73</p></td><td><p>45</p></td><td><p>65</p></td><td><p>57</p></td><td><p>53</p></td><td><p>333</p></td><td><p>5</p></td></tr><tr><td><p>74</p></td><td><p>83</p></td><td><p>45</p></td><td><p>73</p></td><td><p>29</p></td><td><p>72</p></td><td><p>633</p></td><td><p>5</p></td></tr><tr><td><p>83</p></td><td><p>85</p></td><td><p>64</p></td><td><p>85</p></td><td><p>29</p></td><td><p>85</p></td><td><p>633</p></td><td><p>53</p></td></tr>
<tr><td colspan="6"><p dir="rtl">Visual control of herbs (%) DAA25</p></td><td><p>Pendimethalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>STEME</p></td><td colspan="2"><p>PAPRH</p></td><td colspan="2"><p>LAMPU</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ai/ha</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>-</p></td><td><p>48</p></td><td><p>-</p></td><td><p>83</p></td><td><p>3</p></td><td><p>2.5</p></td></tr>
٤٦١٥
-٧٧-
<tr><td><p>-</p></td><td><p>25</p></td><td><p>-</p></td><td><p>28</p></td><td><p>-</p></td><td><p>86</p></td><td><p>3</p></td><td><p>5</p></td></tr><tr><td><p>-</p></td><td><p>27</p></td><td><p>-</p></td><td><p>35</p></td><td><p>-</p></td><td><p>94</p></td><td><p>3</p></td><td><p>53</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>58</p></td><td><p>-</p></td><td><p>3</p></td><td><p>553</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>5</p></td><td><p>-</p></td><td><p>38</p></td><td><p>-</p></td><td><p>25</p></td><td><p>333</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>57</p></td><td><p>-</p></td><td><p>75</p></td><td><p>-</p></td><td><p>53</p></td><td><p>633</p></td><td><p>3</p></td></tr><tr><td><p>27</p></td><td><p>63</p></td><td><p>57</p></td><td><p>73</p></td><td><p>83</p></td><td><p>93</p></td><td><p>553</p></td><td><p>2.5</p></td></tr><tr><td><p>29</p></td><td><p>63</p></td><td><p>67</p></td><td><p>75</p></td><td><p>85</p></td><td><p>88</p></td><td><p>333</p></td><td><p>2.5</p></td></tr><tr><td><p>27</p></td><td><p>68</p></td><td><p>45</p></td><td><p>73</p></td><td><p>86</p></td><td><p>93</p></td><td><p>553</p></td><td><p>5</p></td></tr><tr><td><p>29</p></td><td><p>65</p></td><td><p>55</p></td><td><p>75</p></td><td><p>93</p></td><td><p>93</p></td><td><p>333</p></td><td><p>5</p></td></tr><tr><td><p>38</p></td><td><p>57</p></td><td><p>82</p></td><td><p>92</p></td><td><p>93</p></td><td><p>95</p></td><td><p>633</p></td><td><p>5</p></td></tr><tr><td><p>39</p></td><td><p>53</p></td><td><p>84</p></td><td><p>96</p></td><td><p>97</p></td><td><p>93</p></td><td><p>633</p></td><td><p>53</p></td></tr>
<tr><td><p>pigweed, redroot</p></td><td><p>Amaranthus retroflexus L.</p></td><td><p>AMARE</p></td><td></td></tr><tr><td><p>rapeseed, winter</p></td><td><p>Brassica napus</p></td><td><p>BRSNW</p></td><td></td></tr><tr><td><p>lambsquarters, common</p></td><td><p>Chenopodium album L.</p></td><td><p>CHEAL</p></td><td></td></tr><tr><td><p>thistle, canada</p></td><td><p>Cirsium arvense (L.) Scop.</p></td><td><p>CIRAR</p></td><td><p>5</p></td></tr><tr><td><p>kochia</p></td><td><p>Kochia scoparia (L.) Schrad.</p></td><td><p>KCHSC</p></td><td></td></tr><tr><td><p>deadnettle, purple</p></td><td><p>Lamium purpureum L.</p></td><td><p>LAMPU</p></td><td></td></tr><tr><td><p>poppy, common</p></td><td><p>Papaver rhoeas L.</p></td><td><p>PAPRH</p></td><td></td></tr><tr><td><p>mustard, wild</p></td><td><p>Sinapis arvensis L.</p></td><td><p>SINAR</p></td><td></td></tr><tr><td><p>chickweed, common</p></td><td><p>Stellaria media (L.) Vill.</p></td><td><p>STEME</p></td><td><p>53</p></td></tr>
ha/g ae = g macafe acid per hectare
ha/g ai = EGP per hectare
٤٦١٥
-٧٨-
Obs = observed value
Exp = the expected value calculated using the Kolbe equation
DAA = fatigue after spraying
5 Example IV. Reliability assessment Country of occurrence in soil of herbicide mixtures for weed control
A seed of the desired test plant is planted in a soil matrix made with a mixture of clay and sand (e.g. 28.6 percent salt, 58.8 percent loam, and 52.6 percent sand, pH). The solid matrix It contains a plastic container with a size of 5 quarts and a surface area of 83.6 square centimeters (cm).<sup>2</sup>(.
53 The product consists of the benzyl ester of 4-amino-3-chumuro-5-phumuro-6-(4-chumuro-2-phumoro-3-methoxyphenyl)pyridine-2-carboxylic acid (compound A) formulated as SC. (a concentrated compound) and various herbicide components, individually and in combinations. The images of compound A were used on the basis of acid sulfur.
The images of compound A included include the compound of formula I:
55
<img file="SA4615B1_D0018.tif" />
Compound A benzyl ester
Ingredients of herbicides that are based on pepper and include a fine herbicide inhibitor (pendimethalin (MTI). Service: dithiopyr Prowl<sup>®</sup> 3.3EC
Propyzamide Surflan formula<sup>®</sup> SC used as whole oryzalin Dithiopyr WP 23 used as
KKerb<sup>®</sup> 50WP, thiazopyr (technical grade material).
٤٦١٥
-٧٩-
Processing requirements are calculated based on the measured parameters, the concentration of the falafel component or the acid in the formulation and a 52 ml serving volume in a ratio of HA/L587.
For applications involving formulated compounds and quantities of compounds placed individually in a 25 ml vial and poured into a 5.25% volume (v/v) Dex<sup>®</sup> - Agricultural crop oil concentrate (COC) 5 for a rolled working yield x 52 i and/or
He is silent. The solution for use is prepared by adding an appropriate amount to each compound solution (e.g. 5 ml) and the final concentration is intended to be 53 mM ml of aqueous mixture of 5.25% vol/vol (COC so that the final solution contains 5.25%) vol / Hajj (COC).
53 For treatments involving technical compounds, weigh the quantities and place them individually in a 25 ml glass vial.
It was mixed in a volume of 97:3 (v/v) acetate/DMSO to obtain a mixed solution By adding an appropriate quantity from each packed load ( Example: 5 ml (this is intended to be the appropriate final concentration when adding 53 ml of 5.25% v/v COC).
55 So that the final head load contains 5.25% v/v (COC).
When using technical materials, the concentrated spray solution can be added to the spray solution so that the acetone is DMSO at a final concentration of 56.2% and 3.5%, respectively.
For processing involving formulated technical compounds, the quantities are weighed and placed individually in a 25 ml glass vial and poured into a volume of 97:3 (vol/vol) acetone/DMSO for a continuous working yield 23 packed x 52. The quantities of the loaded load are measured from the formulated compound and placed individually in
A glass bottle of 25 ml and a mixture of 5.5% (volume/volume) COC (or 1/2 ml). If the test compound does not mix well, boil the mixture and/or mix. Prepare a solution This can be achieved by adding an appropriate amount to each compressed load ( Example: 5 ml (this reaches the appropriate final concentration when adding 53 ml of aqueous mixture of 5.5% v/v)
25 COC so that the final head load contains 5.25% volume/volume (COC).
It may be necessary to add magnesium and/or 97:3 acetoacetone/DMSO to the individual solutions so that the
DMSO acetate with a final concentration of 8.5% and 3.25%, respectively.
٤٦١٥
-٨٠-
All mixture solutions are visually checked for compatibility with the compounds before use. The spray nozzle is applied to plant materials with a Mandel track nozzle on top of the nozzle equipped with a 8332 nozzle to deliver the work An area of 533 cm with a height of 58 to 23 inches, or 46-53 cm above the average plant height. Control plants are sprayed in the same way.
5 Plants that are planted and transplanted into the greenhouse are placed in the greenhouse and watered with irrigation methods to prevent the removal of the control compounds. After approximately 3 weeks, the conditions of the control plants compare visually to untreated plants on a scale from 3 to 533%, where 3 corresponds to no infection and growth and 533 equals kill.
Colby's formula was used to cover the expected herbicidal effect of RS Colby's formula.
of herbicide and antagonistic response of the synergistic Calculation.5967 53
22-55:23Weeds.combinations
The following equations are used to calculate the expected activity of minerals containing the components A and B:
Expected = 533/ B×A (B+ A)
55 A = the observed effectiveness of the flavonoid ingredient A at the same concentration during its use in Dumit.
B= The observed effectiveness of the flavonoid ingredient B at the same concentration when used in Dumit.
Please provide details about the emerging compounds, their uses, and the types of exotic plants and plants Findings in tables 58-22.
23 Table 58. Synergistic effect of pre-emergent soil application of benzyl ester and Dithiopyr in an anti-herbicide formulation for weed control.
<tr><td colspan="2"><p dir="rtl">Visual control of herbs (%) 27</p><p>DAA</p></td><td><p>Dithiopyr</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td><p>XANST</p></td><td><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Exp</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr>
٤٦١٥
-٨١-
<tr><td><p>-</p></td><td><p>27</p></td><td><p>-</p></td><td><p>23</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>52</p></td><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>543</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>57</p></td><td><p>-</p></td><td><p>23</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>27</p></td><td><p>43</p></td><td><p>23</p></td><td><p>43</p></td><td><p>543</p></td><td><p>56</p></td></tr><tr><td><p>52</p></td><td><p>55</p></td><td><p>42</p></td><td><p>55</p></td><td><p>543</p></td><td><p>32</p></td></tr><tr><td><p>39</p></td><td><p>47</p></td><td><p>36</p></td><td><p>48</p></td><td><p>283</p></td><td><p>56</p></td></tr><tr><td><p>63</p></td><td><p>63</p></td><td><p>52</p></td><td><p>53</p></td><td><p>283</p></td><td><p>32</p></td></tr>
Table 23. Synergistic effect of pre-emergent soil application of benzyl ester compound and Oryzalin in an anti-herbicide formulation for weed control.
<tr><td colspan="2"><p dir="rtl">DAA33 (%)</p></td><td><p>Oryzalin</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>5</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>48</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>48</p></td><td><p>83</p></td><td><p>5523</p></td><td><p>56</p></td></tr><tr><td><p>55</p></td><td><p>95</p></td><td><p>5523</p></td><td><p>32</p></td></tr>
Table 25. The synergistic effect of use in the pre-emergence environment is complex Benzyl ester and propyzamide in an anti-herbicide formulation for weed control.
٤٦١٥
-٨٢-
<tr><td colspan="2"><p dir="rtl">Visual control of weeds</p><p>DAA33 (%)</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>IPOHE</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>5</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>35</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>35</p></td><td><p>73</p></td><td><p>5523</p></td><td><p>56</p></td></tr><tr><td><p>38</p></td><td><p>68</p></td><td><p>5523</p></td><td><p>32</p></td></tr>
<tr><td colspan="2"><p dir="rtl">DAA33 (%)</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>SEBEX</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>43</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>37</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>52</p></td><td><p>533</p></td><td><p>283</p></td><td><p>56</p></td></tr><tr><td><p>48</p></td><td><p>93</p></td><td><p>563</p></td><td><p>56</p></td></tr><tr><td><p>62</p></td><td><p>95</p></td><td><p>5523</p></td><td><p>56</p></td></tr>
٤٦١٥
-٨٣-
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA33</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>BRAPP</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>37</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>39</p></td><td><p>28</p></td><td><p>283</p></td><td><p>56</p></td></tr><tr><td><p>63</p></td><td><p>73</p></td><td><p>283</p></td><td><p>32</p></td></tr><tr><td><p>55</p></td><td><p>83</p></td><td><p>563</p></td><td><p>56</p></td></tr><tr><td><p>68</p></td><td><p>63</p></td><td><p>563</p></td><td><p>32</p></td></tr>
<tr><td colspan="2"><p dir="rtl">DAA33 (%)</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>ECHCG</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>23</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>33</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>35</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>48</p></td><td><p>98</p></td><td><p>563</p></td><td><p>56</p></td></tr>
٤٦١٥
-٨٤-
<tr><td><p>57</p></td><td><p>53</p></td><td><p>563</p></td><td><p>32</p></td></tr><tr><td><p>62</p></td><td><p>533</p></td><td><p>5523</p></td><td><p>56</p></td></tr><tr><td><p>69</p></td><td><p>533</p></td><td><p>5523</p></td><td><p>32</p></td></tr>
<tr><td colspan="4"><p dir="rtl">Visual control of herbs (%) 33</p><p>DAA</p></td><td><p>Propyzamide</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>SETFA</p></td><td colspan="2"><p>ECHCO</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>52</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>-</p></td><td><p>3</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>3</p></td><td><p>-</p></td><td><p>3</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>68</p></td><td><p>-</p></td><td><p>23</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>93</p></td><td><p>-</p></td><td><p>83</p></td><td><p>5523</p></td><td><p>3</p></td></tr><tr><td><p>53</p></td><td><p>53</p></td><td><p>52</p></td><td><p>5</p></td><td><p>283</p></td><td><p>56</p></td></tr><tr><td><p>53</p></td><td><p>88</p></td><td><p>3</p></td><td><p>63</p></td><td><p>283</p></td><td><p>32</p></td></tr><tr><td><p>73</p></td><td><p>533</p></td><td><p>32</p></td><td><p>55</p></td><td><p>563</p></td><td><p>56</p></td></tr><tr><td><p>73</p></td><td><p>55</p></td><td><p>26</p></td><td><p>73</p></td><td><p>563</p></td><td><p>32</p></td></tr><tr><td><p>94</p></td><td><p>533</p></td><td><p>82</p></td><td><p>75</p></td><td><p>5523</p></td><td><p>56</p></td></tr><tr><td><p>94</p></td><td><p>533</p></td><td><p>85</p></td><td><p>533</p></td><td><p>5523</p></td><td><p>32</p></td></tr>
Table 22. The synergistic effect of use in the pre-emergence environment is complex Benzyl ester and Thiazopyr are used in an anti-herbicide formulation to control weeds.
٤٦١٥
-٨٥-
<tr><td colspan="2"><p dir="rtl">Herbal control (%) DAA27</p></td><td><p>Thiazopyr</p></td><td><p dir="rtl">Mercolytic benzyl ester</p></td></tr><tr><td colspan="2"><p>XANST</p></td><td></td><td></td></tr><tr><td><p>Exp</p></td><td><p>Obs</p></td><td><p>g ai/ha</p></td><td><p>g ae/ha</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>3</p></td><td><p>56</p></td></tr><tr><td><p>-</p></td><td><p>25</p></td><td><p>3</p></td><td><p>32</p></td></tr><tr><td><p>-</p></td><td><p>55</p></td><td><p>283</p></td><td><p>3</p></td></tr><tr><td><p>-</p></td><td><p>53</p></td><td><p>563</p></td><td><p>3</p></td></tr><tr><td><p>24</p></td><td><p>43</p></td><td><p>283</p></td><td><p>56</p></td></tr><tr><td><p>59</p></td><td><p>35</p></td><td><p>563</p></td><td><p>56</p></td></tr><tr><td><p>59</p></td><td><p>35</p></td><td><p>5523</p></td><td><p>56</p></td></tr>
BRAPP
ECHCG 5
ECHCO
IPOHE
SEBEX
SETFA
53
Brachiaria platyphylla (Groseb.) Nash or
signalgrass, broadleaf Urochloa platyphylla (Nash) RD Webster barnyardgrass Echinochloa crus-galli (L.) P. Beauv.
junglerice Echinochloa colonum (L.) Link
morningglory, ivyleaf Ipomoea hederacea (L.) Jacq.
sesbania, hemp Sesbania exaltata (Raf.) Cory/Rydb. Ex Hill
Foxtail, giant Setaria faberi Herrm.
ha/g ae = g macafe acid per hectare
ha/g ai = EGP per hectare
Obs = observed value
٤٦١٥
-٨٦-
Exp = the expected value calculated using the Kolbe equation
DAA = fatigue after spraying
٤٦١٥
-٨٧-
Contents8
44 members in 23 offices
Priority claims5
| Document | Office | Kind | Date |
|---|---|---|---|
| 201261675100 | United States of America | P | |
| 61675100 | United States of America | – | |
| 13840303 | United States of America | – | |
| 201313840303 | United States of America | A | |
| 2013051305 | United States of America | W |
Members44
| Document | Office | Kind | |
|---|---|---|---|
| CA2879951A1 | Canada | A1 | |
| US2014031219A1 | United States of America | A1 | |
| WO2014018398A1 | World Intellectual Property Organization (WIPO) | A1 | |
| TW201406296A | Taiwan Province of China | A | |
| UY34933A | Uruguay | A | |
| US8846570B2 | United States of America | B2 | |
| US2015018208A1 | United States of America | A1 | |
| SG11201500531UA | Singapore | A | |
| BR102013018481A2 | Brazil | A2 | |
| AU2013293311A1 | Australia | A1 | |
| AR091899A1 | Argentina | A1 | |
| IL236864A0 | Israel | A0 | |
| IL236864D0 | Israel | D0 | |
| KR20150038247A | Republic of Korea | A | |
| CN104661519A | China | A | |
| EP2877016A1 | European Patent Office (EPO) | A1 | |
| IN1376DEN2015A | India | A | |
| SA113340754B1 | Saudi Arabia | B1 | |
| SA4101B1 | Saudi Arabia | B1 | |
| US9119397B2 | United States of America | B2 | |
| JP2015527329A | Japan | A | |
| SA115360505B1 | Saudi Arabia | B1 | |
| SA4615B1This record | Saudi Arabia | B1 | |
| EP2877016A4 | European Patent Office (EPO) | A4 | |
| HK1209586A | Hong Kong, China | A | |
| HK1209586A1 | Hong Kong, China | A1 | |
| MX2015001157A | Mexico | A | |
| RU2015105741A | Russian Federation | A | |
| AU2013293311B2 | Australia | B2 | |
| CN104661519B | China | B | |
| ZA201501147B | South Africa | B | |
| RU2629255C2 | Russian Federation | C2 | |
| JP6220875B2 | Japan | B2 | |
| TWI627905B | Taiwan Province of China | B | |
| EP2877016B1 | European Patent Office (EPO) | B1 | |
| RU2017128076A | Russian Federation | A | |
| PT2877016T | Portugal | T | |
| ES2713171T3 | Spain | T3 | |
| BR102013018481B1 | Brazil | B1 | |
| IL236864A | Israel | A | |
| IL236864B | Israel | B | |
| KR102102408B1 | Republic of Korea | B1 | |
| BR102013018481B8 | Brazil | B8 | |
| MY192771A | Malaysia | A |
Numbers
- Publication
- 4615
- Publication, DOCDB
- 4615
- Application
- 115360505
- Application, DOCDB
- 115360505
Titles2
- Arabic
- تركيبة مبيد أعشاب تشتمل على 4-أمينو-3-كلورو-5-فلورو-6-(4-كلورو-2- فلورو -3- ميثوكسي فينيل) بيريدين-2- حمض كربوكسيلي أو مشتقات منه ومبيدات عشبية مثبطة للقنيات الدقيقة
- English
- Herbicidal compositions comprising 4-amino-3-chloro-5-fluoro-6-(4-chloro-2-fluoro-3-methoxyphenyl)pyridine-2-carboxylic acid or a derivative thereof and microtubule inhibiting herbicides
Classification
- CPC, 6
- A01N43/40
- A01N33/18
- A01N37/18
- A01N41/06
- A01N43/10
- A01N43/78
- IPC, 1
- A01N37 018