Nova Patents
CA2018697C

Explosive detection screening system

Abstract

An explosive detection screening system used for the detection of explosives and other controlled substances such as drugs or narcotics. The screening system detects the vapor and/or particulate emissions from the aforementioned substances and reports that they are present on an individual or object and the concentration of each substance detected. The screening system comprises a sampling chamber for the collection of the vapor and/or particulate emissions, a concentration and analyzing means for the purification of the collected vapor and/or particulate emissions and subsequent detailed chemical analysis of said emissions, and a control and data processing system for the control of the overall system.

CA2018697C, drawing sheet 1
Sheet 1 of 24

Term

Term ended

Expired 11 June 2010, 16.3 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

77 claims: 4 independent, 73 dependent

  1. 1
    2018697, (e) means for concentrating said vapor or particulate emissions collected by said sample collection means, said means for concentrating having a first means for adsorption and a second means for desorption of said concentrated vapor or particulates;(f) detecting means responsive to said vapor or particulate emissions desorbed from said second means for desorption to generate a first signal and an alarm.
  2. 2
    The walk-through explosive detection screening system of Claim 1, wherein said sample collection means further includes a transportation means for collecting said volume of air from said sampling port and transporting said volume of air to said concentrating means.
  3. 3
    The walk-through explosive detection screening system of Claim 2, wherein sample collection means further comprises:a portable sampling device to collect a sample of volume of air from a specific area;a particulate collector and detector means for collecting and concentrating particulate emissions collected by said portable sampling device.
  4. 4
    The walk-through explosive detecting screening system of Claim 3, wherein sample collection means further comprises a sampling box for collecting a sample volume of air that is drawn off luggage that is placed in said sampling box, said portable sampling device is connected to said sampling box for drawing said sample volume of air.
  5. 5
    The walk-through explosive detection screening system of Claim 3, wherein said portable sampling device is a hand held wand which is valve connected to said transportation means by a flexible pipe.
  6. 6
    The walk-through explosive detection screening system of Claim 3, wherein said particulate collector and detector means comprises:a rotating plate, said rotating plate defining an axis of rotation and having at least two openings, said two openings being circumferentially spaced about said axis of rotation and supporting stainless steel mesh screens for collecting particulate emissions from said portable sampling device;a collection chamber in line with said transportation means for receiving said rotating plate, said stainless steel mesh screens being exposed to and adsorbing emissions collected by said portable sampling device;and a desorption chamber for receiving said rotating plate, said stainless steel mesh screens being heated to desorb said collected emissions, whereby said desorbed emissions are swept into a valve means.
  7. 7
    The walk-through explosive detection screening system of Claim 6, wherein said particulate collector and detector means further comprises a PCAD actuator unit means for rotating said rotating plate a predetermined distance every sampling period and simultaneously controlling said valve means.
  8. 8
    The walk-through explosive detection screening system of Claim 7, wherein said desorption chamber comprises a first pair of electrodes which connect to said stainless steel mesh screens and apply a current to said screens to rapidly heat said screens and desorb the collected emissions.
  9. 9
    The walk-through explosive detection screening system of Claim 7, wherein said particulate collector and detector means further comprises a chemical analyzer means.
  10. 10
    The walk-through explosive detection screening system of Claim 9, wherein said valve means is a six-port valve, said six-port valve being an interface between said desorption chamber and said chemical analyzer means.
  11. 11
    The walk-through explosive detection screening system of Claim 9, wherein said valve means is a three-way valve, said three-way valve is an interface between said desorption chamber and said chemical analyzer.
  12. 12
    The walk-through explosive detection screening system of Claim 7, wherein said PCAD actuator unit means comprises first and second stepper motors.
  13. 13
    The walk-through explosive detection screening system of Claim 9, wherein said chemical analyzer is a gas chromatograph.
  14. 14
    The walk-through explosive detection system of Claim 9, wherein said chemical analyzer is an ion mobility spectrometer.
  15. 15
    The walk-through explosive detection screening system of Claim 3, wherein said particulate collector and detector means comprises:a rotating plate, said rotating plate defining an axis of rotation and having three openings, said three openings being circumferentially spaced about said axis of rotation and supporting stainless steel mesh screens for collecting particulate emissions from said portable sampling device;a collection chamber in line with said transportation means for receiving said rotating plate, said stainless steel mesh screens being exposed to and adsorbs emissions collected by said portable sampling device;a desorption chamber for receiving said rotating plate, said stainless steel mesh screens being heated to desorb said collected emissions, whereby said desorbed emissions are swept into a valve means;and a flushing chamber for receiving said rotating plate, said stainless steel mesh screens are heated to desorb any remaining collected emissions, said desorbed emissions are vented to the ambient environment.
  16. 16
    The walk-through explosive detection screening system of Claim 15, wherein said particulate collector and detector means further comprises a PCAD actuator unit means for rotating said rotating plate a predetermined distance every sampling and simultaneously controlling said valve means.
  17. 17
    The walk-through explosive detection screening system of Claim 7, wherein said desorption chamber comprises a first pair of electrodes which connect to said stainless steel mesh screens and apply a current to said screens to rapidly heat said screen and desorb the collected emissions.
  18. 18
    The walk-through explosive detection screening system of Claim 15, wherein said flushing chamber comprises a second pair of electrodes which connect to said stainless steel mesh screens and supply a current to said screen to rapidly heat said screen and further desorb the collected emissions.
  19. 19
    The walk-through explosive detection screening system of Claim 1, wherein said system is targeted for collecting explosive compound vapors or particulates.
  20. 20
    The walk-through explosive detection screening system of Claim 1, wherein said system is targeted for collecting narcotic compound vapors or particulates.
  21. 21
    A portable explosive detection screening system for the detection of concealed explosives, chemical agents and other controlled substances such as drugs or narcotics by detecting their vapor or particulate emissions, said system comprising:(a) a portable sampling chamber means for gathering a sample volume of air from a specific area on a person or object;(b) a sample collection means to collect a sample volume of air that is swept off the individual or object, said sample collection means comprising a particulate collector and detector means for collecting and concentrating particulate emissions collected by said portable sampling means;(c) means for concentrating said vapor or particulate emissions collected by said sample collection means, said means for concentrating having a first means for adsorption and a second means for desorption of said concentrated vapor or particulates;(d) detecting means responsive to said vapor or particulate emissions desorbed from said second means for desorption to generate a first signal and an alarm.
  22. 22
    The portable explosive detection screening system of Claim 21, wherein said sample collection means further includes a transportation means for collecting said volume of air from said portable sampling means and transporting said volume of air to said particulate collector and detector means, and connects said particulate collector and detector means to said means for concentrating.
  23. 23
    The portable explosive detection screening system of Claim 22, wherein said transportation means is a pipe with a first end connected to said portable sampling means and a second end connected to a suction fan for drawing said volume of air from said portable sampling means at predetermined times, said pipe can be stainless steel, aluminum or ABS plastic.
  24. 24
    The portable explosive detection screening system of Claim 23, wherein said portable sampling means is a hand held wand which is value connected to said transportation means by a flexible pipe.
  25. 25
    The portable explosive detection screening system of Claim 23, wherein said particulate collector and detector means comprises:a rotating plate, said rotating plate defining an axis of rotation and having at least two openings, said two openings being circumferentially spaced about said axis of rotation and supporting stainless steel mesh screens for collecting particulate emissions from said portable sampling means;a collection chamber in line with said transportation means for receiving said rotating plate, said stainless steel mesh screens being exposed to and adsorbing emissions collected by said portable sampling means;and a desorption chamber for receiving said rotating plate, said stainless steel mesh screens being heated to desorb said collected emissions, whereby said desorbed emissions are swept into a valve means.
  26. 26
    The portable explosive detection screening system of Claim 25, wherein said particulate collector and detector means further comprises a PCAD actuator unit means for rotating said • J rotating plate a predetermined distance every sampling period and simultaneously controlling said valve means.
  27. 27
    The portable explosive detection screening system of Claim 26, wherein said desorption chamber comprises a first pair of electrodes which connect to said stainless steel mesh screens and apply a current to said screens to rapidly heat said screens and desorb the collected emissions.
  28. 28
    The portable explosive detection screening system of Claim 27, wherein said particulate collector and detector means further comprises a chemical analyzer means.
  29. 29
    The portable explosive detection screening system of Claim 28, wherein said valve means is a six-port valve, said six-port valve being an interface between said desorption chamber and said chemical analyzer means.
  30. 30
    The portable explosive detection screening system of Claim 28, wherein said valve means is a three-way valve, said three-way valve is an interface between said desorption chamber and said chemical analyzer.
  31. 31
    The portable explosive detection screening system of Claim 26, wherein said PCAD actuator unit means comprises first and second stepper motors.
  32. 32
    The portable explosive detection screening system of Claim 28, wherein said chemical analyzer is a gas chromatograph .
  33. 33
    The portable explosive detection screening system of Claim 28, wherein said chemical analyzer is an ion mobility spectrometer.
  34. 34
    The portable explosive detection screening system of Claim 23, wherein said particulate collector and detector means comprises:a rotating plate, said rotating plate defining an axis of rotation and having three openings, said three openings being circumferentially spaced about said axis of rotation and supporting stainless steel mesh screens for collecting particulate emissions from said portable sampling device;a collection chamber in line with said transportation means for receiving said rotating plate, said stainless steel mesh screens being exposed to and adsorbs emissions collected by said portable sampling device;a desorption chamber for receiving said rotating plate, said stainless steel mesh screens being heated to desorb said collected emissions, whereby said desorbed emissions are swept into a valve means;and a flushing chamber for receiving said rotating plate, said stainless steel mesh screens are heated to desorb any remaining collected emissions, said desorbed emissions are vented to the ambient environment.
  35. 35
    The portable explosive detection screening system of Claim 34, wherein said particulate collector and detector means further comprises a PCAD actuator unit means for rotating said rotating plate a predetermined distance every sampling and simultaneously controlling said valve means.
  36. 36
    The portable explosive detection screening system of Claim 35, wherein said desorption chamber comprises a first pair of electrodes which connect to said stainless steel mesh screens and apply a current to said screens to rapidly heat said screen and desorb the collected emissions.
  37. 37
    The portable explosive detection screening system of Claim 34, wherein said flushing chamber comprises a second pair of electrodes which connect to said stainless steel mesh screens and supply a current to said screen to rapidly heat said screen and further desorb the collected emissions.
  38. 38
    The portable explosive detection screening system of Claim 23, wherein said concentrating means comprises a primary preconcentrator.
  39. 39
    The portable explosive detection screening system of Claim 38, wherein said first means for adsorption and said second means for desorption are first and second filter means mounted on a movable platform.
  40. 40
    The portable explosive detection screening system of Claim 39, wherein said first and second filter means are movable between an adsorption position and a desorption position, each of said filter means being in line with said suction fan and operable to adsorb vapor and/or particulate emissions contained in said voltune of air in said adsorption position, and each of said filter means being in line with an interface means when said adsorbed vapor and/or particulate emissions are desorbed.
  41. 41
    The portable explosive detection screening system of Claim 30, wherein said primary preconcentrator further comprises a third filter means mounted on said movable platform between said first and second filter means.
  42. 42
    The portable explosive detection screening system of Claim 31, wherein said first, second and third filter means are movable between said adsorption position, said desorption position, and thermal cleaning position, each of said filter means being in line with said suction fan and operable to adsorb vapor and/or particulate emissions contained in said volume of air in said adsorption position, each of said filter means being in line with an interface means when said adsorbed vapor and/or particulate emissions are desorbed, and each of said filter means being in line with a thermal cleaning means when other filter means are being adsorbed and desorbed.
  43. 43
    The portable explosive detection screening system of Claim 42, wherein said primary preconcentrator comprises a gas supply means for supplying a clean gas flow to said first, second and third filter means when said respective filter means is in said desorption position, and in said thermal cleaning position, said clean gas flow is used to desorb and sweep said concentrated vapor and/or vapor emanating from particulate matter into said interface means when said filter means is in said desorption position, and said clean gas flow is used to thermally clean and sweep residue into the ambient environment.
  44. 44
    The portable explosive detection screening system of Claim 43, wherein said clean gas is an inert gas.
  45. 45
    The portable explosive detection screening system of Claim 44, wherein said first, second and third filter means comprise wire screens which hold a selected adsorbing material coated therein.
  46. 46
    The portable explosive detection screening system of Claim 45, wherein said selected adsorbing material is targeted for collecting explosive compound vapors or particulates.
  47. 47
    The portable explosive detection screening system of Claim 45, wherein said selected adsorbing material selectively adsorbs narcotic compound vapors or particulates.
  48. 48
    The portable explosive detection screening system of Claim 45, wherein said primary preconcentrator still further comprises a heat exchanger for supplying heat to each of said filter means when they are in said desorption and said thermal cleaning position to aid in desorbing the vapor and/or particulate emissions.
  49. 49
    The portable explosive detection screening system of Claim 43, wherein both said first, second and third filtering means are each movable between said adsorption position, said desorption position and said thermal cleaning position, said second filter means occupying said desorption position when said first filter means occupying said adsorption position and when said third filter means occupying said thermal cleaning position, and said third filter means occupies said adsorption position when said first filter means occupies said desorption position and said second filter means occupying said thermal cleaning position.
  50. 50
    The portable explosive detection screening system of Claim 43, wherein said first, second and third filter means are moved by a control system.
  51. 51
    The portable explosive detection screening system of Claim 50, wherein said control system comprises:a hydraulic control unit and pump connected to said platform by a rigid shaft, said hydraulic control unit is operable to move said platform from a locked position to an X unlocked position;and a preconcentrator control unit which is operable to rotate said platform when said platform is in the unlocked position.
  52. 52
    The portable explosive detection screening system of Claim 51, wherein said preconcentrator control unit is a stepper motor.
  53. 53
    The portable explosive detection screening system of Claim 43, wherein said interface means is a connector tube which connects said primary preconcentrator to said detection means and which carries said concentrated vapor and/or vapors emanating from particulate matter from said primary preconcentrator to said detection means.
  54. 54
    The portable explosive detection screening system of Claim 43, wherein said interface means is a secondary preconcentrator which comprises a multi-port valve system.
  55. 55
    The portable explosive detection screening system of Claim 54, wherein said multi-port valve system comprises a sixport valve which contains an adsorption/desorption tube connected across two of said six-ports and four gas lines, said sixport valve being rotatable between an adsorb position and a desorb position.
  56. 56
    The portable explosive detection screening system of Claim 55, wherein said six-port valve is rotated by an electronic interface control unit.
  57. 57
    The portable explosive detection screening system of Claim 56, wherein said interface control unit includes a stepper motor.
  58. 58
    The portable explosive detection screening system of Claim 55, wherein said six-port valve is in said adsorb position when said concentrated vapor and/or vapor emanating from particulate matter is passed through said adsorption tube for further concentration.
  59. 59
    The portable explosive detection screening system of Claim 55, wherein said six-port valve is in said desorb position when said further concentrated vapor and/or vapor X emanating from particulate matter is desorbed and swept into said detection means.
  60. 60
    The portable explosive detection screening system of Claim 55, wherein said adsorption/desorption tube is electrically connected to a controlled current source which is used to heat the tube to a predetermined temperature as part of the desorption process.
  61. 61
    The portable explosive detection screening system of Claim 60, wherein said interface means further comprises a gas supply means for sweeping said further concentrated vapor and/or vapors emanating from particulate matter into said detection means.
  62. 62
    The portable explosive detection screening system of Claim 61, wherein said detection means comprises an ion mobility spectrometer (IMS) for analyzing said further concentrated vapor and/or vapors emanating from particulate matter and generating said first signal if a target material is detected.
  63. 63
    The portable explosive detection screening system of Claim 61, wherein said detection means comprises a gas chromatograph/electron capture detector for analyzing said further concentrated vapor and/or vapors emanating from particulate matter and generating said first signal if a target material is detected.
  64. 64
    The portable explosive detection screening system of Claim 61, wherein said detection means comprises a nitrogen phosphorous detector.
  65. 65
    The portable explosive detection screening system of Claim 61, wherein said detection means comprises a photo ionization detector.
  66. 66
    The portable explosive detection screening system of Claim 61, wherein said detection means comprises an ion mobility spectrometer and a gas chromatograph/electron capture detector for analyzing said further concentrated vapor and/or vapor emanating from particulate matter and generating said first signal if a target material is detected. X
  67. 67
    The portable explosive detection screening system of Claim 66, wherein said system further includes a control and data processing means which further comprises:a digital computer with a stored digital program which is responsible for the control of the system;and a process control module which is an interface between said digital computer and said interface control unit, said preconcentrator control unit and said control unit.
  68. 68
    The portable explosive detection screening system of Claim 67, wherein said stored digital program is operable to control a plurality of processes including said self-diagnostic and self-calibration processes, control of said sample collection, and processing of collected data from said detection means.
  69. 69
    A method for the detection of concealed explosive chemical agents and other controlled substances such as drugs or narcotics by detecting their vapor or particulate emissions, said method comprising the steps of:(a) gathering a sample volume of air from a specific area on a person or object by sweeping the vapor of particulate emissions from said person or object;(b) collecting said sample volume of air that is swept off the individual or object utilizing a sample collection means, said sample collection means includes a particulate collector and detector means for collecting and concentrating particulate emissions;(c) concentrating said vapor or particulate emissions collected by said sample collection means, said means for concentrating having a first means for adsorption and a second means for desorption of said concentrated vapor or vapors emanating from particulate emissions;and (d) detecting said vapor or particulate emissions desorbed from said second means for desorption.
  70. 70
    The method for the detection of concealed explosives according to Claim 69, wherein said collecting step further X comprises transporting said volume of air to said concentrating means.
  71. 71
    The method for the detection of concealed explosives according to Claim 70, wherein said concentrating step comprises adsorbing target materials in a first position and desorbing target materials in a second position.
  72. 72
    The method for the detection of concealed explosives according to Claim 70, wherein said desorbing target materials in a second position comprises the steps of:heating said target materials to a predetermined desorbing temperature or a predetermined vaporizing temperature;and sweeping said target materials with an inert gas.
  73. 73
    The method for the detection of concealed explosives according to Claim 71, wherein said step of detecting includes sweeping said target materials and inert gas into a detection means.
  74. 74
    The method for the detection of concealed explosives according to Claim 72, wherein said step of detecting further includes chemically analyzing said target materials.
  75. 75
    The method for the detection of concealed explosives according to Claim 74, which further includes the step of controlling the collection and processing of data with a digital computer which utilizes a stored program.
  76. 76
    The method for the detection of concealed explosives according to Claim 70, wherein said concentrating step further comprises thermally cleaning the residue from a third means for adsorption and desorption when said third means is in a thermally cleaning position.
  77. 77
    The method for the detection of concealed explosives according to Claim 76, wherein said thermally cleaning comprises the steps of:heating said residue on said third means to a predetermined temperature;and sweeping said heated residue to the ambient environment. ABSTRACT An explosive detection screening system used for the 5 detection of explosives and other controlled substances such as drugs or narcotics. The screening system detects the vapor and/or particulate emissions from the aforementioned substances and reports that they are present on an individual or object and the concentration 10 of each substance detected. The screening system comprises a sampling chamber for the collection of the vapor and/or particulate emissions, a concentration and analyzing means for the purification of the collected vapor and/or particulate emissions and subsequent 15 detailed chemical analysis of said emissions, and a control and data processing system for the control of the overall system. X
Independent claims77