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Separation membrane and method of preparing and using same 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01D-053/22
출원번호 US-0592519 (1984-03-23)
발명자 / 주소
  • Lee Cheng H. (Wilmington MA)
출원인 / 주소
  • Abcor, Inc. (Wilmington MA 02)
인용정보 피인용 횟수 : 76  인용 특허 : 18

초록

A differential pore-collapsed separation membrane particularly useful as a gas-separation membrane and a method of preparing such differential pore-collapsed membrane, which method comprises treating an asymmetric membrane, while under one-sided constraint, with a treating solution comprising a vola

대표청구항

A process of preparing an asymmetric separation membrane suitable for use as a gas-permeation or reverse-osmosis separation membrane, which process comprises: (a) treating a preformed dried leached high-flux, asymmetric, polymeric membrane, having a top skin surface with large pores of about 50 angs

이 특허에 인용된 특허 (18)

  1. Kell Michael J. (Concord CA) Mahoney Robert D. (Dublin CA), Cellulose acetate hollow fiber and method for making same.
  2. Manos ; Philip, Gas separation membrane drying with water replacement liquid.
  3. Schell William J. (Long Beach CA), Gas separation membranes.
  4. Manos ; Philip, Membrane drying process.
  5. Kimura Shiro G. (Schenectady NY) Lavigne Raymond G. (Waterford NY) Browall Warella R. (Scotia NY), Method for casting ultrathin methylpentene polymer membranes.
  6. Brooks Albert A. (St. Louis MO) Henis Jay M. S. (Creve Coeur MO) Tripodi Mary K. (Creve Coeur MO), Methods for preparing anisotropic hollow fiber membranes comprising polymer of acrylonitrile and styrene and hollow fibe.
  7. Henis Jay M. S. (Creve Coeur MO) Tripodi Mary K. (Creve Coeur MO), Multicomponent membranes for gas separations.
  8. Ishii Kiyoshi (Saitama JA) Sato Kozi (Saitama JA), Poly(arylether-sulfone) semipermeable membrane comprising substituted halomethyl and/or quaternary nitrogen groups.
  9. Yoshida Koichi (Fuji JPX) Hayano Fusakazu (Chigasaki JPX) Ii Yoshiro (Fuji JPX), Polyaryl ether sulfone semipermeable membrane and process for producing same.
  10. Yoshida goichi (Fuji JPX) Hayano Fusakazu (Chigasaki JPX) Ii Yoshiro (Fuji JPX), Polyaryl ether sulfone semipermeable membrane and process for producing same.
  11. Graham Tommy E. (Raleigh NC) MacLean Donald L. (Raleigh NC), Process for hydrogen recovery from ammonia purge gases.
  12. Null Harold R. (Creve Coeur MO) Perry Eli (Olivette MO), Process for hydrogen recovery from ammonia purge gases.
  13. Makino Hiroshi (Ichihara JPX) Kusuki Yoshihiro (Ichihara JPX) Harada Takashi (Ichihara JPX) Shimazaki Hiroshi (Ichihara JPX) Isida Tosio (Ichihara JPX), Process for modifying porous polymeric membrane.
  14. Wang Donald G. J. (Tamshui TWX), Process for the production of semipermeable polybenzimidazole membranes with low temperature annealing.
  15. Perry Eli (Olivette MO), Process for the recovery of hydrogen from ammonia purge gases.
  16. Ward Robert R. (Cary NC) Chang Richard C. (Raleigh NC) Danos James C. (Chapel Hill NC) Carden ; Jr. Joseph A. (Durham NC), Processes for coating bundles of hollow fiber membranes.
  17. Cooley ; T. E. ; Coady ; A. B., Removal of H.sub.2 S and/or CO.sub.2 from a light hydrocarbon stream by use of gas permeable membrane.
  18. Manos ; Philip, Solvent drying of cellulose ester membranes.

이 특허를 인용한 특허 (76)

  1. Tang Man-Wing (Alhambra CA) King William M. (Los Alamitos CA) Wensley C. Glen (Villa Park CA), Air dried cellulose acetate membranes.
  2. Boock, Robert; Rixman, Monica; Brauker, James H.; Petisce, James R.; Simpson, Peter C.; Brister, Mark; Tapsak, Mark A.; Carr-Brendel, Victoria, Analyte sensor.
  3. Brauker, James H.; Boock, Robert; Rixman, Monica; Simpson, Peter C.; Brister, Mark; Shults, Mark, Analyte sensor.
  4. Simpson, Peter C.; Boock, Robert J.; Petisce, James R.; Brister, Mark C.; Rixman, Monica A.; Woo, Kum Ming; Nguyen, Lisa; Brunner, Seth R.; Chee, Arthur; Nicholas, Melissa A.; Wightlin, Matthew D.; Pryor, Jack; Markovic, Dubravka, Analyte sensors having a signal-to-noise ratio substantially unaffected by non-constant noise.
  5. Simpson, Peter C.; Boock, Robert; Petisce, James R.; Brister, Mark; Rixman, Monica A.; Woo, Kum Ming; Nguyen, Lisa; Brunner, Seth R.; Chee, Arthur; Nicholas, Melissa A.; Wightlin, Matthew; Pryor, Jack; Markovic, Dubravka, Analyte sensors having a signal-to-noise ratio substantially unaffected by non-constant noise.
  6. Kesting Robert E. (Elsenfeld MO DEX) Fritzsche Alfred K. (Manchester MO) Murphy Milton K. (Clayton MO) Handerman Alan C. (Matthews NC) Cruse Clint A. (St. John MO) Malon Raymond F. (Edmundson MO), Asymmetric gas separation membranes having graded density skins.
  7. Petisce, James R.; Woo, Kum Ming; Ha, Victor; Nicholas, Melissa, Cellulosic-based resistance domain for an analyte sensor.
  8. Taylor John A. (Pinckney MI), Composite semipermeable membranes and method of making same.
  9. Taylor John A. (Pinckney MI), Composite semipermeable membranes and method of making same.
  10. Kulkarni Sudhir S. (Hoffman Estates IL) Yates Stephen F. (Arlington Heights IL) Swamikannu A. Xavier (Des Plaines IL), Cross-linked gas selective membranes.
  11. Umehara, Takeshi; Itoh, Shigehide; Van Kessel, Petrus; Itami, Yujiro; Nakanishi, Masatoshi; Noda, Hiroyuki; Kurima, Akihiro; Iwahashi, Kimiko, Curable compositions and membranes.
  12. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K., Device and method for determining analyte levels.
  13. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K., Device and method for determining analyte levels.
  14. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K., Device and method for determining analyte levels.
  15. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K., Device and method for determining analyte levels.
  16. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K., Device and method for determining analyte levels.
  17. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K., Device and method for determining analyte levels.
  18. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K., Device and method for determining analyte levels.
  19. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K.; Gilligan, Barbara J.; Tapsak, Mark A., Device and method for determining analyte levels.
  20. Shults, Mark C.; Updike, Stuart J.; Rhodes, Rathbun K.; Gilligan, Barbara J.; Tapsak, Mark A., Device and method for determining analyte levels.
  21. Jeffrey J. Chiou, Epoxysilicone coated membranes.
  22. Lyons,Arthur; Van Den Gross,Andrew, Gas separation membranes.
  23. Anazawa Takanori (Urawa JPX) Ono Yoshiyuki (Okegawa JPX), Heterogeneous membrane and process for production thereof.
  24. Petisce, James R.; Brister, Mark; Shults, Mark; Brauker, James H.; Neale, Paul V., Implantable analyte sensor.
  25. Minhas, Bhupender S.; Chuba, Michael R.; Saxton, Robert J., Membrane process for separating sulfur compounds from FCC light naphtha.
  26. Williams Samuel C. (Canton MA) Bikson Benjamin (Brookline MA) Nelson Joyce K. (Lexington MA) Burchesky Robert D. (Norwood MA), Method for preparing composite membranes for enhanced gas separation.
  27. Sternberg, Shmuel, Multizone polymer membrane and dialyzer.
  28. Lyons,Arthur; Van Den Gross,Andrew, Oxygen and nitrogen enriched atmospheres in aircraft.
  29. Petisce, James R.; Tapsak, Mark A.; Simpson, Peter C.; Carr-Brendel, Victoria E.; Brauker, James H., Oxygen enhancing membrane systems for implantable devices.
  30. Petisce, James R.; Tapsak, Mark A.; Simpson, Peter C.; Carr-Brendel, Victoria E.; Brauker, James H., Oxygen enhancing membrane systems for implantable devices.
  31. Petisce, James R.; Tapsak, Mark A.; Simpson, Peter C.; Carr-Brendel, Victoria; Brauker, James H., Oxygen enhancing membrane systems for implantable devices.
  32. Petisce, James R.; Tapsak, Mark A.; Simpson, Peter C.; Carr-Brendel, Victoria; Brauker, James H., Oxygen enhancing membrane systems for implantable devices.
  33. Petisce, James; Tapsak, Mark A.; Simpson, Peter C.; Carr-Brendel, Victoria; Brauker, James H., Oxygen enhancing membrane systems for implantable devices.
  34. Petisce, James; Tapsak, Mark A.; Simpson, Peter C.; Carr-Brendel, Victoria; Brauker, James H., Oxygen enhancing membrane systems for implantable devices.
  35. Simpson, Peter C.; Boock, Robert J.; Wightlin, Matthew D.; Shults, Mark C., Particle-containing membrane and particulate electrode for analyte sensors.
  36. Simpson, Peter C.; Boock, Robert J.; Wightlin, Matthew D.; Shults, Mark C., Particle-containing membrane and particulate electrode for analyte sensors.
  37. Simpson, Peter C.; Boock, Robert J.; Wightlin, Matthew; Shults, Mark C., Particle-containing membrane and particulate electrode for analyte sensors.
  38. Simpson, Peter C.; Boock, Robert J.; Wightlin, Matthew; Shults, Mark C., Particle-containing membrane and particulate electrode for analyte sensors.
  39. Bikson Benjamin (Brookline MA) Miller James E. (Waltham MA) Nelson Joyce K. (Lexington MA), Permeable membranes for enhanced gas separation.
  40. Bikson Benjamin (Brookline MA) Miller James E. (Waltham MA) Nelson Joyce K. (Lexington MA), Permeable membranes for enhanced gas separation.
  41. Boock, Robert J.; Rixman, Monica A.; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  42. Boock, Robert J.; Rixman, Monica A.; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  43. Boock, Robert J.; Rixman, Monica A.; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  44. Boock, Robert J.; Rixman, Monica A.; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  45. Boock, Robert J.; Rixman, Monica A.; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  46. Boock, Robert; Rixman, Monica A.; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  47. Boock, Robert; Rixman, Monica A.; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  48. Boock, Robert; Swinney, Monica Rixman; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
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  50. Boock, Robert; Swinney, Monica Rixman; Zhang, Huashi; Estes, Michael J.; Lawrence, Kristina, Polymer membranes for continuous analyte sensors.
  51. Admassu Wudneh (Concord CA) Jensvold John A. (Benicia CA) clark Daniel O. (Benicia CA), Process for treating a liquid-wet polycarbonate membrane to improve its gas separation properties.
  52. Babcock Walter C. (Bend OR) Friesen Dwayne T. (Bend OR), Semipermeable thin-film membranes comprising siloxane, alkoxysilyl and aryloxysilyl oligomers and copolymers.
  53. Rhodes, Rathbun K.; Tapsak, Mark A.; Brauker, James H.; Shults, Mark C., Sensor head for use with implantable devices.
  54. Rhodes, Rathbun K.; Tapsak, Mark A.; Brauker, James H.; Shults, Mark C., Sensor head for use with implantable devices.
  55. Rhodes, Rathbun K.; Tapsak, Mark A.; Brauker, James H.; Shults, Mark C., Sensor head for use with implantable devices.
  56. Itou, Shigehide, Separation composite membrane and separating membrane module using the same.
  57. Boock, Robert J.; Rixman, Monica A., Silicone based membranes for use in implantable glucose sensors.
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  60. Boock, Robert; Rixman, Monica, Silicone based membranes for use in implantable glucose sensors.
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  62. Friesen Dwayne T. (Bend OR) Obligin Alan S. (Catonville MD), Siloxane-grafted membranes.
  63. Hayes Richard A. (Parkersburg WV), Surfactant treatment of aromatic polyimide gas separation membranes.
  64. Hayes Richard A. (Parkersburg WV), Surfactant treatment of polyaramide gas separation membranes.
  65. Tapsak, Mark A.; Rhodes, Rathbun K.; Shults, Mark C.; McClure, Jason D., Techniques to improve polyurethane membranes for implantable glucose sensors.
  66. Tapsak, Mark A.; Rhodes, Rathbun K.; Shults, Mark C.; McClure, Jason D., Techniques to improve polyurethane membranes for implantable glucose sensors.
  67. Tapsak, Mark A.; Rhodes, Rathbun K.; Shults, Mark C.; McClure, Jason D., Techniques to improve polyurethane membranes for implantable glucose sensors.
  68. Tapsak, Mark A.; Rhodes, Rathbun K.; Shults, Mark C.; McClure, Jason D., Techniques to improve polyurethane membranes for implantable glucose sensors.
  69. Tapsak, Mark A.; Rhodes, Rathbun K.; Shults, Mark C.; McClure, Jason D., Techniques to improve polyurethane membranes for implantable glucose sensors.
  70. Tapsak, Mark A.; Rhodes, Rathbun K.; Shults, Mark C.; McClure, Jason D., Techniques to improve polyurethane membranes for implantable glucose sensors.
  71. Brister, Mark; Neale, Paul V.; Brauker, James H.; Thrower, James Patrick, Transcutaneous analyte sensor.
  72. Brister, Mark; Neale, Paul V.; Brauker, James; Thrower, James Patrick, Transcutaneous analyte sensor.
  73. Brister, Mark; Neale, Paul V.; Saint, Sean; Petisce, James R.; Thrower, James Patrick; Kamath, Apurv Ullas; Kline, Daniel S.; Guerre, John A.; Codd, Daniel Shawn; McGee, Thomas F.; Petersen, David Michael, Transcutaneous analyte sensor.
  74. Li, Tao, Treating gas separation membrane with aqueous reagent dispersion.
  75. Roman Ian Charles, Treatment of gas separation membranes with inert solvent.
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