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Ion-transport membrane assembly incorporating internal support 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01D-053/22
  • B01D-069/04
  • B01D-071/02
출원번호 US-0015622 (2001-12-17)
발명자 / 주소
  • van Hassel, Bart Antonie
  • Prasad, Ravi
  • Chen, Jack
  • Lane, Jonathan
출원인 / 주소
  • Praxair Technology, Inc.
대리인 / 주소
    Rosenblum, David M.
인용정보 피인용 횟수 : 18  인용 특허 : 13

초록

An ion-transport membrane assembly including a tubular, ion-transport membrane that is fabricated from one or more ion-transport, ceramic materials capable of ionic transport at an operational temperature of greater than 400° C. The membrane may be an oxygen transport membrane or a hydrogen transpor

대표청구항

1. An ion-transport membrane assembly comprising: a tubular, ion-transport membrane fabricated from at least one ion-transport, ceramic material capable of ionic transport when subjected to an external pressure and an operational temperature of greater than about 400° C.; and a plurality of stru

이 특허에 인용된 특허 (13)

  1. Edlund David J. (Redmond OR), Composite hydrogen separation element and module.
  2. Carolan Michael Francis ; Dyer Paul Nigel ; Motika Stephen Andrew, Compositions capable of operating under high oxygen partial pressures for use in solid-state oxygen producing devices.
  3. Carolan Michael Francis ; Dyer Paul Nigel ; Motika Stephen Andrew ; Alba Patrick Benjamin, Coompositions capable of operating under high carbon dioxide partial pressures for use in solid-state oxygen producing d.
  4. Carolan Michael Francis ; Dyer Paul Nigel ; Motika Stephen Andrew ; Alba Patrick Benjamin, Fluid separation devices capable of operating under high carbon dioxide partial pressures which utilize creep-resistant solid-state membranes formed from a mixed conducting multicomponent metallic ox.
  5. Gottzman Christian Friedrich ; Prasad Ravi, Integrated solid electrolyte ionic conductor separator-cooler.
  6. Anil V. Virkar ; Christian Friedrich Gottzmann ; Ravi Prasad ; Bart Antonie Van Hassel, Method of separating oxygen with the use of composite ceramic membranes.
  7. van Zon Cornelis (Zwolle NLX) Jonkeren Gerrit J. (Bruchterveld NLX) Eggengoor Hilbert (Bruchterveld NLX), Non-woven tube for membrane filtration.
  8. Taylor Dale M. (Salt Lake City UT) Bright Jeffrey Donald (Salt Lake City UT) Carolan Michael Francis (Allentown PA) Cutler Raymond Ashton (Bountiful UT) Dyer Paul Nigel (Allentown PA) Minford Eric (L, Planar solid-state membrane module.
  9. Abe Fumio (106 ; Shingu-cho ; 1-chome Handa-city ; Aichi-Pref ; 475 JPX), Porous membrane for use in reaction process.
  10. Mazanec Terry J. (Solon OH) Velenyi Louis J. (Lyndhurst OH), Process for separating oxygen from an oxygen-containing gas by using a bi-containing mixed metal oxide membrane.
  11. Chen Chieh Cheng ; Prasad Ravi ; Gottzmann Christian Friedrich, Solid electrolyte membrane with porous catalytically-enhancing constituents.
  12. Gottzmann Christian Friedrich ; Prasad Ravi ; Schwartz Joseph Michael ; Bergsten Victor Emmanuel ; White James Eric ; Mazanec Terry J. ; Cable Thomas L. ; Fagley John C., Tube and shell reactor with oxygen selective ion transport ceramic reaction tubes.
  13. Dyer Paul N. (Allentown PA) Bright Jeffrey D. (Salt Lake City UT) Carolan Michael F. (Allentown PA) Minford Eric (Laurys Station PA) Richards Robin E. (Lansdale PA) Russek Steven L. (Allentown PA) Ta, Tubular solid-state membrane module.

이 특허를 인용한 특허 (18)

  1. Habib, Mohamed Abdel-Aziz; Ben-Mansour, Rached, Carbon-free fire tube boiler.
  2. Habib, Mohamed Abdel-Aziz; Al-Qutub, Amro Mohammad, Carbon-free gas turbine.
  3. Nagabhushana, Nagendra; Lane, Jonathan Andrew; Christie, Gervase Maxwell; van Hassel, Bart Antonie, Composite oxygen ion transport membrane.
  4. Habib, Mohamed Abdel-Aziz; Ben-Mansour, Rached, Counterflow ion transport boiler system.
  5. Lambert, Tristan Hayes; Campos, Luis M; Bandar, Jeffrey; Dell, Emma Jane, Cyclopropenium polymers and methods for making the same.
  6. Joo, Jong Hoon; Yu, Ji Haeng; Yoo, Chung-Yul, Electrode-support type of gas-separation membrane module, tubular structure of same, production method for tubular structure, and hydrocarbon reforming method using same.
  7. Habib, Mohamed Abdel-Aziz; Ben-Mansour, Rached, Fire tube boiler system with ion transport membranes.
  8. Jacobson, Craig P.; Visco, Steven J.; DeJonghe, Lutgard C.; Stefan, Constantin I., Fluorine separation and generation device.
  9. Jacobson,Craig P.; Visco,Steven J.; De Jonghe,Lutgard C.; Stefan,Constantin I., Fluorine separation and generation device.
  10. Jacobson,Craig P.; Visco,Steven J.; De Jonghe,Lutgard C.; Stefan,Constantin I., Fluorine separation and generation device.
  11. Ben-Mansour, Rached; Habib, Mohamed A.; Jamal, Aqil, Gas-assisted liguid fuel oxygen reactor.
  12. Hayward,Peter J.; Higgins,Richard; Goldsmith,Robert L.; Bishop,Bruce A., High CTE reaction-bonded ceramic membrane supports.
  13. Gopalan,Srikanth; Pal,Uday, Hydrogen separation using oxygen ion-electron mixed conduction membranes.
  14. Ghoniem, Ahmed F.; Mitsos, Alexander; Shao-Horn, Yang; Habib, Mohamed A.; Mezghani, Khaled; Ben-Mansour, Rached, Integrated polymeric-ceramic membrane based oxy-fuel combustor.
  15. Baumann, Stefan; Serra Alfaro, Jose Manuel; Meulenberg, Wilhelm Albert; Buchkremer, Hans-Peter; Stoever, Detlev, Oxygen-permeable membrane and method for the production thereof.
  16. Apte,Prasad S.; Schwartz,Joseph M.; White,James E., Separation and reaction method utilizing an oxygen ion transport element.
  17. Bossard,Peter R.; Mettes,Jacob, System and method for efficiently separating hydrogen gas from a mixed gas source.
  18. Sullivan, Terrence B.; Huber, David J., System and method for oxygen separation in an integrated gasification combined cycle system.
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