$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Membrane electrochemical cell provided with gas diffusion electrodes in contact with porour, flat, metal current conductors having highly distributed contact area 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-002/00
  • H01M-008/10
  • H01M-006/48
출원번호 US-0881530 (1997-06-24)
우선권정보 IT-0001293 (1996-06-26)
발명자 / 주소
  • Ramunni Enrico,ITX
  • Fleba Giampiero,ITX
  • Brambilla Massimo,ITX
출원인 / 주소
  • De Nora S.p.A., ITX
대리인 / 주소
    Bierman, Muserlian and Lucas
인용정보 피인용 횟수 : 83  인용 특허 : 5

초록

The present invention refers to an electrochemical cell or stack of cells comprising two end-plates (7), bipolar plates (1) made of metal or metal alloy, gas permeable metal distributors (2), metal current collectors(3), gasket frames (4) provided with channels for feeding the gaseous reactants and

대표청구항

[ We claim:] [1.] An electrochemical cell comprising two end-plates, bipolar plates adjacent to the end plates, permeable metal distributors, porous and permeable metal current collectors, gasket frames provided with means for feeding the gaseous reactants and removing the excess reactants and conde

이 특허에 인용된 특허 (5)

  1. Faita Giuseppe (Novara ITX) Mantegazza Claudio (Saronno ITX), Electrochemical cell provided with ion exchange membranes and bipolar metal plates.
  2. Raistrick Ian D. (Los Alamos NM), Electrode assembly for use in a solid polymer electrolyte fuel cell.
  3. Plowman Keith R. (Lake Jackson TX) Zachary Richard E. (Clinton LA), Membrane electrolyzer.
  4. Cisar Alan J. (Cypress TX) Gonzalez-Martin Anuncia (College Station TX) Hitchens G. Duncan (Bryan TX) Murphy Oliver J. (Bryan TX), Membrane with internal passages to permit fluid flow and an electrochemical cell containing the same.
  5. Murphy Oliver J. (Bryan TX) Hitchens G. Duncan (Bryan TX), Method and apparatus for electrochemical production of ozone.

이 특허를 인용한 특허 (83)

  1. Fuglevand, William A.; Bayyuk, Shibli Hanna I.; Lloyd, Greg A.; Wilkerson, Shalena V.; Wright, Matthew M., Air cooled fuel cell module.
  2. Fan, Qinbai; Platon, Renato; Le, Siem; Kot, Renata, Air-breathing direct methanol fuel cell with metal foam current collectors.
  3. Edlund, David J., Bipolar plate assembly, fuel cell stacks and fuel cell systems incorporating the same.
  4. Edlund,David J., Bipolar plate assembly, fuel cell stacks and fuel cell systems incorporating the same.
  5. Connor, Eric J.; Fagley, John C.; Fly, Gerald W.; Gu, Wenbin; Lai, Yeh-Hung; Masten, David A., Bipolar plate for a fuel cell stack.
  6. Cisar Alan J. ; Murphy Oliver J., Bipolar separator plates for electrochemical cell stacks.
  7. Cisar, Alan J.; Clarke, Eric T., Bonding electrochemical cell components.
  8. Cisar, Alan J.; Murphy, Oliver J.; Clarke, Eric T., Bonding electrochemical cell components.
  9. Simpkins, Haskell; Haltiner, Jr., Karl J.; Mukerjee, Subhasish; Weil, Kenneth Scott; Paxton, Dean, Compliant current collector for fuel cell anode and cathode.
  10. Scharf, Mesa, Consumption-based fuel cell monitoring and control.
  11. Lloyd,Greg A.; Bai,Lijun; Bayyuk,Shibli Hanna I., Current collector for use in a fuel cell.
  12. Spink, Scott A.; Lott, David R.; Fuglevand, William A., Direct liquid fuel cell.
  13. Cisar,Alan J.; Andrews,Craig C.; Greenwald,Charles J.; Murphy,Oliver J.; Boyer,Chris; Yalamanchili,Rattaya Chow; Salinas,Carlos E., Electrochemical cell and bipolar assembly for an electrochemical cell.
  14. Faita, Giuseppe; Federico, Fulvio, Electrolysis cell with gas diffusion electrode.
  15. Shimamune,Takayuki, Electrolytic cell.
  16. Appleby, A. John; Gamburzev, Serguey, Electronically conducting fuel cell component with directly bonded layers and method for making the same.
  17. King, George R., Enhancement of proton exchange membrane fuel cell system by use of radial placement and integrated structural support system.
  18. Pan, Alfred I-Tsung, Flex based fuel cell.
  19. King,George R., Flow fields for fuel cells.
  20. Cisar, Alan; Murphey, Oliver, Fluid cooled bipolar plate.
  21. Bai, Lijun; Lloyd, Greg A., Fuel cell having metalized gas diffusion layer.
  22. Bai,Lijun; Lloyd,Greg A., Fuel cell having metalized gas diffusion layer.
  23. Gaines,Michael G.; King,George R.; Schmitt,Kenneth J., Fuel cell stack assembly.
  24. King, George R., Fuel cell stack assembly.
  25. David J. Edlund ; Thomas G. Herron ; Craig F. Holmes, Fuel cell system controller.
  26. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Fuel cell system controller.
  27. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Fuel cell system controller.
  28. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Fuel cell system controller.
  29. Cisar,Alan; Weng,Dacong; Murphy,Oliver J., Fuel cell system for low pressure operation.
  30. Brambilla, Massimo; Mazzucchelli, Gabriele, Fuel cell with cooling system based on direct injection of liquid water.
  31. Ovshinsky, Stanford R.; Menjak, Ana; Hopper, Thomas; Menjak, Zdravko; Fok, Kevin; Aladjov, Boyko; Venkatesan, Srinivasan; Dhar, Subhash K., Fuel cell with encapsulated electrodes.
  32. Ovshinsky, Stanford R.; Menjak, Ana; Hopper, Tom; Menjak, Zdravko; Fok, Kevin; Aladjov, Boyko; Venkatesan, Srinivasan; Dhar, Subhash K., Fuel cell with framed electrodes.
  33. Appleby, A. John; Gamburzev, Serguey, Fuel cell with monolithic flow field-bipolar plate assembly and method for making and cooling a fuel cell stack.
  34. Puttaiah,Rajeev; Menjak,Zdravko; Gradinarova,Latchezara M.; Venkatesan,Srinivasan; Aladjov,Boyko; Dhar,Subhash; Ovshinsky,Stanford R., Fuel cell with overmolded electrode assemblies.
  35. Edlund, David J., Fuel cells and fuel cell systems containing non-aqueous electrolytes.
  36. Edlund,David J., Fuel cells and fuel cell systems containing non-aqueous electrolytes.
  37. Mazzucchelli, Gabriele; Brambilla, Massimo; Fleba, Gian Piero; Maggiore, Antonio, Humidification device for polymeric membrane fuel cells.
  38. LaVen, Arne, Hydrogen-producing fuel cell systems with load-responsive feedstock delivery systems.
  39. Starz, Karl-Anton; Zuber, Ralf; Krämer, Anita; Fehl, Knut; Köhler, Joachim; Wittpahl, Sandra, Ink for producing membrane electrode assemblies for fuel cells.
  40. David J. Edlund ; William A. Pledger, Integrated fuel cell system.
  41. Edlund, David J.; Pledger, William A., Integrated fuel cell system.
  42. Edlund,David J.; Pledger,William A., Integrated fuel cell system.
  43. Dabbousi, Bashir Osama; Al-Khawajah, Anwar Hasan; Martinie, Gary Dean, Liquid hydrocarbon based fuels for fuel cell on-board reformers.
  44. King, George R., Mass transport for ternary reaction optimization in a proton exchange membrane fuel cell assembly and stack assembly.
  45. Oh, Jung-min; Kim, Hae-kyoung; Kim, Ji-rae; Kim, Joon-hee; Lee, Yoon-hoi; Joo, Sang-hoon, Membrane electrode assembly for fuel cell.
  46. Faita, Giuseppe; Toro, Antonino; Merlo, Luca; Xue, Zhi Yang, Membrane fuel cell countercurrent-fed with non-humidified air.
  47. Losfeld, Ronny; Anaf, Lieven, Metal stack for fuel cells or electrolysers.
  48. Edlund, David J.; Herron, Thomas G.; Holmes, Craig F., Methods for operating a fuel cell system under reduced load conditions.
  49. King, George R., Polarized gas separator and liquid coalescer for fuel cell stack assemblies.
  50. Delfino, Antonio; Olsommer, David, Polymer membrane fuel cell.
  51. Spink, Scott A.; Lott, David R.; Wright, Matthew M.; Yemul, Dinesh S.; Fuglevand, William A.; Bayuuk, Shiblihanna I.; Duan, Runrun; Bai, Lijun, Proton exchange membrane fuel cell.
  52. Fuglevand, William A.; Bayyuk, Shibli Hanna I.; Wright, Matthew M., Proton exchange membrane fuel cell and method of forming a fuel cell.
  53. Spink, Scott A.; Lott, David R.; Wright, Matthew M.; Ryan, Eric J.; Yemul, Dinesh S.; Fisher, John M., Proton exchange membrane fuel cell stack and fuel cell stack module.
  54. Spink, Scott A.; Lott, David R.; Wright, Matthew M.; Ryan, Eric J.; Yemul, Dinesh S.; Fisher, John M., Proton exchange membrane fuel cell stack and fuel cell stack module.
  55. Spink, Scott A.; Lott, David R.; Wright, Matthew M.; Ryan, Eric J.; Yemul, Dinesh S.; Fisher, John M., Proton exchange membrane fuel cell stack and fuel cell stack module.
  56. Holder, Helen Ann; Goebel, Sandra, Retrofittable power supply.
  57. Saitou, Masahiro; Saito, Kazuo; Takaishi, Kazutoshi; Takahashi, Masashi, Separator of proton exchange fuel cell and its manufacturing method.
  58. LaVen, Arne; Scharf, Mesa, Shared variable-based fuel cell system control.
  59. Withers-Kirby, Sandra; Lund, Jr., John R.; Fiebig, Brad, Solid chemical hydride dispenser for generating hydrogen gas.
  60. South, Joseph T.; Wetzel, Eric D., Structural fuel cells and components thereof.
  61. David J. Edlund ; Thomas G. Herron ; William A. Pledger, System and method for controlling the operation of a fuel processing system.
  62. Edlund, David J.; Herron, Thomas G.; Pledger, William A., System and method for controlling the operation of a fuel processing system.
  63. Edlund, David J.; Herron, Thomas G.; Pledger, William A., System and method for controlling the operation of a fuel processing system.
  64. Edlund,David J.; Herron,Thomas G.; Pledger,William A., System and method for controlling the operation of a fuel processing system.
  65. David J. Edlund ; William A. Pledger, System and method for early detection of contaminants in a fuel processing system.
  66. Edlund, David J.; Pledger, William A., System and method for early detection of contaminants in a fuel processing system.
  67. Edlund,David J.; Pledger,William A., System and method for early detection of contaminants in a fuel processing system.
  68. Edlund,David J.; Pledger,William A., System and method for early detection of contaminants in a fuel processing system.
  69. Herron Thomas G., System and method for optimizing fuel cell purge cycles.
  70. Herron, Thomas G., System and method for optimizing fuel cell purge cycles.
  71. Herron, Thomas G., System and method for optimizing fuel cell purge cycles.
  72. Herron, Thomas G., System and method for optimizing fuel cell purge cycles.
  73. Anthony J. Dickman ; David J. Edlund ; William A. Pledger, System and method for recovering thermal energy from a fuel processing system.
  74. Dickman, Anthony J.; Edlund, David J.; Pledger, William A., System and method for recovering thermal energy from a fuel processing system.
  75. Dickman,Anthony J.; Edlund,David J.; Pledger,William A., System and method for recovering thermal energy from a fuel processing system.
  76. Marchetti George A., Thin graphite bipolar plate with associated gaskets and carbon cloth flow-field for use in an ionomer membrane fuel cell.
  77. Marchetti, George A., Thin graphite bipolar plate with associated gaskets and carbon cloth flow-field for use in an ionomer membrane fuel cell.
  78. Gaines,Michael G.; King,George R.; Schmitt,Kenneth J., Unitized MEA assemblies and methods for making same.
  79. Cisar Alan J. ; Murphy Oliver J. ; Jeng King-Tsai ; Salinas Carlos ; Simpson Stan ; Weng Dacong ; Moaddel Homayoun, Unitized barrier and flow control device for electrochemical reactors.
  80. Cisar,Alan J.; Murphy,Oliver J.; Jeng,King Tsai; Salinas,Carlos; Simpson,Stan; Weng,Dacong; Moaddel,Homayoun, Unitized barrier and flow control device for electrochemical reactors.
  81. Dave,Nileshkumar Trambaklal, Unitized fuel cell electrode gasket assembly.
  82. Edlund, David J.; LaVen, Arne; Scharf, Mesa, Utilization-based fuel cell monitoring and control.
  83. Edlund, David J.; LaVen, Arne; Scharf, Mesa, Utilization-based fuel cell monitoring and control.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로