AU2005292666B2

Mesostructured zeolitic materials and methods of making and using the same

Abstract

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Term

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Expired 22 April 2025, 1.4 years ago.

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  2. Filed
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16 claims: 14 independent, 2 dependent

  1. 1
    THE CLAIMS DEFINING THE INVENTION ARE AS FOLLOWS:1. A crystalline inorganic mesostructured zeolitic one-phase hybrid single crystal having long-range crystallinity and comprising a plurality of mesopores,
  2. 2
    A crystalline inorganic mesostructured one-phase hybrid single crystal zeolitic material having long-range crystallinity comprising a plurality of mesopores, such that the long-range crystallinity results in XRD peaks at two theta angle degrees higher than 8.
  3. 4
    The material of any preceding claim, wherein the crystalline inorganic material has an external surface contour substantially the same as the external surface contour of the crystalline inorganic material prior to defining the plurality of mesopores.
  4. 5
    The material of any preceding claim, wherein the crystalline inorganic material has a chemical composition framework substantially the same as the chemical composition framework of the crystalline inorganic material prior to defining the plurality of mesopores.
  5. 6
    The material of any preceding claim, wherein the crystalline inorganic material has a connectivity substantially the same as the connectivity of the crystalline inorganic material prior to defining the plurality of mesopores.
  6. 7
    The material of any preceding claim, wherein the crystalline inorganic material has an improved intracrystalline diffusion compared to the intracrystalline diffusion of the crystalline inorganic material prior to defining the plurality of mesopores.
  7. 8
    The material of any preceding claim, wherein an area of each of the plurality of mesopores has a controlled cross sectional area range. COMS ID No:ARCS-336429 Received by IP Australia: Time (H:m) 11:28 Date (Y-M-d) 2011-09-12 12-09-Ί1 11:21 FR0MT-135 P000S/0018 F-058 C'KRPcnbnDCQWAMGBfiT'iZS.l.DOC-lZ/iJSiMl 1 2005292666 12 Sep 2011 -499. The material of claim 8, wherein the controlled cross sectional area range has a controlled distribution range. 10. The material of claim 8 or 9, wherein the controlled cross sectional area range has a diameter and each mesopore diameter has a controlled distribution range. 11. The material of claim 8, 9 or 10, wherein the controlled cross sectional area range has a diameter and each mesopore diameter falls within a 1 nm distribution range. 12. A material according to claim 1 or 2 and substantially as herein described with reference to the drawings and/or the examples. 13. A method of producing a hydrocarbon material product comprising;contacting a higher molecular weight hydrocarbon material with the crystalline inorganic material of any preceding claim under conditions of controlled temperature and pressure to produce a hydrocarbon material product having a lower molecular weight. 14. The method of claim 13, wherein the hydrocarbon material product comprises: gasoline, olefin, propylene, butene, coke, total dry gas, or liquefied petroleum gases, or combinations thereof. 15. A method of catalytically cracking an organic compound comprising the step of contacting the organic compound with the material of any one of claims 1 to 12. 16. A method of processing a polymer comprising: contacting a polymer with the material of any one of claims 1 to 12;and thermally treating the polymer in the presence of the material. 17. A method of water treatment comprising;contacting contaminated water with the material of any one of claims 1 to 12;and COMS ID No: ARCS-336429 Received by IP Australia: Time (H:m) 11:28 Date (Y-M-d) 2011-09-12 12-09-Ί1 14:10 FR0MT-137 P0006/0008 F-060 C:\fJRFonM\DCC'* 1 _l.DQC- ΐ2/ι»9/2(ί11 2005292666 12 Sep 2011 -50removing contaminants from the water with the crystalline inorganic material. 18. A method of making a mesostructure according to claim 1 or 2, the method comprising the steps of: a) providing an inorganic material having long-range crystallinity;b) exposing the inorganic material to a pH controlled medium under a first set of time and temperature conditions;c) exposing the inorganic material to a surfactant under a second set of time and temperature conditions;and d) treating the inorganic material by controlling the first and second set of time and temperature conditions to define a plurality of mesopores having a controlled cross sectional area, forming a mesostructure according to claim 1 or 2 having long-range crystallinity. 19. The method of claim 18, further comprising: e) selecting the pH controlled medium to control a pore volume, a diameter of each of a plurality of mesopores, or a cross sectional area of each of a plurality of mesopores;and f) selecting a quantity of the surfactant to control a pore volume, a diameter of each of a plurality of mesopores, or a cross sectional area of each of a plurality of mesopores, 20. The method of claim 18 or 19, wherein steps (b) and (c) occur simultaneously, 21. The method of claim 18 or 19, wherein steps (b) and (c) occur sequentially. 22. A method of making a mesostructure according to claim 18 and substantially as herein described with reference to the drawings and/or the examples. 23. A material when produced by a method according to any one of claims 18 to 22. 24. The material of any one of claims 1 to 12 or 23, wherein the material exhibits a sharp nitrogen uptake at a partial pressure [P/Po] higher than a partial pressure indicating microporosity. COMS ID No: ARCS-336484 Received by IP Australia: Time (H:m) 14:15 Date (Y-M-d) 2011-09-12 12-09-Ί1 11:22 FR0MT-135 P0010/0018 F-058 2005292666 12 Sep 2011 -51 25. The material of claim 24, wherein the higher partial pressure of the sharp nitrogen uptake of the zeolitic material is between about 0.2 and 0.6. 26. The material of claim 25, wherein the higher partial pressure is about 0.3. 27. The material of any one of claims 1 to 12 or 23, wherein the mesoporosity is arranged. 28. The material of claim 27 when dependent from claim 1 or any claim dependent therefrom, wherein the arrangement produces one or more distinctive XRD peaks at two theta values between 0 and 8 two theta angle degrees. 29. The material of any one of claims 1 to 12 or 23, wherein the material has a faujasite (FAU), mordenite (MOR), orZSM-5 (MFI) structure. 30. The material of any one of claims 1 to 12 or 23, wherein the plurality of mesopores comprise a mean pore diameter from about 2 to about 5 nm, 31. The material of any one of claims 1 to 12 or 23, wherein the plurality of mesopores have a wall thickness from about 1 to about 5 nm. 32. The material of any one of claims 1 to 12 or 23, wherein the plurality of mesopores have a pore size distribution that is narrow. 33. The material of any one of claims 1 to 12 or 23, wherein the plurality of the mesopores comprise a pore size diameter distribution having a range from about one half to about double the average pore size diameter. 34. The material of any one of claims 1 to 12 or 23, wherein the mesopores define a mesopore pore volume, a majority of the mesopore pore volume having a pore size COMS ID No: ARCS-336429 Received by IP Australia: Time (H:m) 11:28 Date (Y-M-d) 2011-09-12 12-09-Ί1 11:22 FR0MT-135 P0011/0018 F-058 C:\NKFOlWnDCC\W AMDW7P2?_] .DOC-12/O9/20II 2005292666 12 Sep 2011 -52diameter distribution range of from about one half to about double the average pore size diameter. 35. The material of claim 29, wherein the material is a faujasite, . 36. The material of any one of claims 1 to 12 or 23, wherein the material has a mesoporous volume adsorption of at least about 0.05 cc/g. 37. The material of claim 36, wherein the material has a mesoporous volume adsorption of at least about 0.1 cc/g. 38. The material of claim 37, wherein the material has a mesoporous volume adsorption of at least about 0.2 cc/g. COMS ID No: ARCS-336429 Received by IP Australia: Time (H:m) 11:28 Date (Y-M-d) 2011-09-12 WO 2006/038912 PCT/US2005/014129 1/26 105c 105b Figure 1A (PRIOR ART) WO 2006/038912 2/26 PCT/US2005/014129 205 Figure 1B 200 WO 2006/038912 PCT/US2005/014129 3/26 Figure 1C WO 2006/038912 PCT/US2005/014129 4/26 Figure ID WO 2006/038912 PCT/US2005/014129 5/26 Figure 2 WO 2006/038912 PCT/US2005/014129 6/26 Figure 3 2°θ WO 2006/038912 PCT/US2005/014129 7/26 Figure 4 WO 2006/038912 PCT/US2005/014129 8/26 Figure 5 100D 0DO 6DQ 400 wavenumber (cm' 1 ) WO 2006/038912 PCT/US2005/014129
  8. 9
    9/26 Figure 6 p/p„ WO 2006/038912 PCT/US2005/014129
  9. 10
    10/26 Figure 7 WO 2006/038912 PCT/US2005/014129
  10. 11
    11/26 Figure 8 0 —*0.0 J-1-1-1-L J_I-1 0.2 0.4 0.6 0.8 1.0 P/P o WO 2006/038912 PCT/US2005/014129
  11. 12
    12/26 Figure 9 WO 2006/038912 PCT/US2005/014129
  12. 13
    13/26 Figure 10 (a) (b) WO 2006/038912 PCT/US2005/014129
  13. 14
    14/26 WO 2006/038912 PCT/US2005/014129
  14. 15
    15/26 Figure 12 WO 2006/038912 PCT/US2005/014129
  15. 16
    16/26 Figure 13 \ Diffusion Limited COKE PCT/US2005/014129 WO 2006/038912 Figure 14 1,3,5 TRIISOPB Higher Conversion COKE WO 2006/038912 PCT/US2005/014129 18/26 Figure 15 Time (min) WO 2006/038912 PCT/US2005/014129 19/26 Figure 16 Percentage over the commercial sample (%) Time (min) WO 2006/038912 PCT/US2005/014129 20/26 Figure 17 Time (min) WO 2006/038912 PCT/US2005/014129 21/26 Figure 18 Time (min) PCT/US2005/014129 22/26 WO 2006/038912 Figure 19 Time (min) WO 2006/038912 PCT/US2005/014129 23/26 Figure 20A Benzene Produced by H-MOR / Benzene Produced by H-MOR[ZNR] Time (min) WO 2006/038912 PCT/US2005/014129 24/26 Dry Gas Gasoline LCO HCO Coke Figure 20B:depicts microactivity test (MAT) results of a conventional fully crystalline zeolite H-Y (Si/Al=l5) and its fully crystalline mesostructured version H-Y[MCM-41]. Figure 20C: depicts the composition of the LPG fraction obtained by Microactivity test (MAT) of a conventional fully crystalline zeolite H-Y (Si/Al=l 5) and its fully crystalline mesostructured version H-Y[MCM-41]. WO 2006/038912 PCT/US2005/014129 25/26 Figure 21 150 250 350 450 Temperature (°C) (A): no catalyst, (B): H-ZSM-5:PE 1:2, (C): H-ZSM-5[MCM-41]:PE 1:2, (D): H-ZSM-5:PE 1:1, (E): H-ZSM-5:PE 2:1, (F): H-ZSM-5[MCM-41]:PE 1:1, (G) H-ZSM-5[MCM-41]:PE 2:1 WO 2006/038912 PCT/US2005/014129 26/26 Figure 22 Wavenumber (cm· 1 )
Independent claims15