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Fuel cell power plant with increased reactant pressures 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/06
  • H01M-008/04
출원번호 US-0189935 (1988-05-03)
발명자 / 주소
  • Cohen Ronald (West Hartford CT) Buswell Richard F. (Glastonbury CT)
출원인 / 주소
  • International Fuel Cells Corporation (South Windsor CT 02)
인용정보 피인용 횟수 : 48  인용 특허 : 1

초록

The fuel cell power plant operates at higher reactant pressures, and thus higher power density (lower cost) and efficiency, by providing reactant reformer steam from a separate steam boiler. Instead of supplying coolant steam to the reformer, the coolant is operated in a closed loop apart from the r

대표청구항

A fuel cell power plant system comprising: (a) a power section comprising a plurality of fuel cells forming a stack, each of said cells having an anode side and a cathode side; (b) means for cooling said stack with a water coolant, said means for cooling including a water circulating loop and heat e

이 특허에 인용된 특허 (1)

  1. Cohen Ronald (West Hartford CT) Buswell Richard F. (Glastonbury CT), Fuel cell power plant with increased reactant pressures.

이 특허를 인용한 특허 (48)

  1. Valensa, Jeroen; Reinke, Michael J.; Voss, Mark G., Annular or ring shaped fuel cell unit.
  2. Clawson Lawrence G. ; Mitchell William L. ; Bentley Jeffrey M. ; Thijssen Johannes H. J., Apparatus for converting hydrocarbon fuel into hydrogen gas and carbon dioxide.
  3. Lawrence G. Clawson ; William L. Mitchell ; Jeffrey M. Bentley ; Johannes H. J. Thijssen, Apparatus for converting hydrocarbon fuel into hydrogen gas and carbon dioxide.
  4. Elias Elias R., Apparatus for pumping a fluid in a fuel cell system.
  5. Clawson,Lawrence G.; Dorson,Matthew H.; Mitchell,William L.; Nowicki,Brian J.; Bentley,Jeffrey M.; Davis,Robert; Rumsey,Jennifer W., Auxiliary reactor for a hydrocarbon reforming system.
  6. Steinfeld George (Southbury CT) Meyers Steven J. (Huntington Beach CA) Lee Arthur (Fishkill NY), Carbonate fuel cell system with thermally integrated gasification.
  7. James H. Kralick, Cooling method and apparatus for use with a fuel cell stack.
  8. Yang,Hyun sup; Sul,Seung ki, Distributed power generation system using a fuel cell and a method of controlling the same.
  9. Yang,Hyun sup; Sul,Seung ki, Distributed power generation system using a fuel cell and a method of controlling the same.
  10. Richards, Gilbert; Trevisan, David; Lee, Michael L; Mahler, Jessica; Parker, Ross; Clarabut, Alex; Pearson, Chad; Ballantine, Arne; Weingaertner, David; Hixson, Jason; Mitlitsky, Fred, Fuel cell mechanical components.
  11. Richards, Gilbert; Trevisan, David; Lee, Michael; Mahler, Jessica; Parker, Ross; Clarabut, Alex; Pearson, Chad; Ballantine, Arne; Weingaertner, David; Hixson, Jason; Mitlitsky, Fred, Fuel cell mechanical components.
  12. Trevisan, David; Daco, Christian; Baugh, David, Fuel cell mechanical components.
  13. Franklin Delano Lomax ; Mujeeb Ismael Ijaz, Fuel cell power generation system and method for powering an electric vehicle.
  14. Vartanian George (Ellington CT), Fuel cell power plant.
  15. Perry, Martin; Ballantine, Arne, Fuel cell stack module shell with integrated heat exchanger.
  16. Perry, Martin; Ballantine, Arne, Fuel cell system components.
  17. Perry, Martin; Venkataraman, Swaminathan, Fuel cell system containing anode tail gas oxidizer and hybrid heat exchanger/reformer.
  18. Perry, Martin; Venkataraman, Swaminathan, Fuel cell system containing anode tail gas oxidizer and hybrid heat exchanger/reformer.
  19. Perry, Martin; Venkataraman, Swaminathan, Fuel cell system containing anode tail gas oxidizer and hybrid heat exchanger/reformer.
  20. Weingaertner, David; Venkataraman, Swaminathan, Hot box design with a multi-stream heat exchanger and single air control.
  21. Weingaertner, David; Venkataraman, Swaminathan, Hot box design with a multi-stream heat exchanger and single air control.
  22. Venkataraman, Swaminathan, Hybrid fuel heat exchanger—pre-reformer in SOFC systems.
  23. Venkataraman, Swaminathan; Weingaertner, David; Kalika, Vlad, Integrated fuel line to support CPOX and SMR reactions in SOFC systems.
  24. Clawson, Lawrence G.; Dorson, Matthew H.; Mitchell, William L.; Nowicki, Brian J.; Thijssen, Johannes; Davis, Robert; Papile, Christopher; Rumsey, Jennifer W.; Longo, Nathan; Cross, III, James C.; Ri, Integrated hydrocarbon reforming system and controls.
  25. Bentley,Jeffrey M.; Clawson,Lawrence G.; Mitchell,William L.; Dorson,Matthew H., Integrated reformer and shift reactor.
  26. Valensa, Jeroen; Reinke, Michael J.; Voss, Mark G., Integrated solid oxide fuel cell and fuel processor.
  27. Valensa, Jeroen; Reinke, Michael J.; Voss, Mark G., Integrated solid oxide fuel cell and fuel processor.
  28. Albertus, Paul S.; Christensen, John F.; Lohmann, Timm; Sanchez-Carrera, Roel S.; Kozinsky, Boris, Metal/air battery with electrochemical oxygen compression.
  29. Clawson Lawrence G. ; Mitchell William L. ; Bentley Jeffrey M. ; Thijssen Johannes H. J., Method for converting hydrocarbon fuel into hydrogen gas and carbon dioxide.
  30. Clawson Lawrence G. ; Mitchell William L. ; Bentley Jeffrey M. ; Thijssen Johannes H. J., Method for converting hydrocarbon fuel into hydrogen gas and carbon dioxide.
  31. Clawson Lawrence G. ; Mitchell William L. ; Bentley Jeffrey M. ; Thijssen Johannes H. J., Method for converting hydrocarbon fuel into hydrogen gas and carbon dioxide.
  32. Sridhar, K. R.; Venkataraman, Swaminathan; Lyle, William David; Ballantine, Arne, Modular fuel cell system.
  33. Sridhar, K. R.; Venkataraman, Swaminathan; Lyle, William David; Ballantine, Arne Watson, Modular fuel cell system.
  34. Weingaertner, David; Kalika, Vlad; Perry, Martin, Pre-reformer for selective reformation of higher hydrocarbons.
  35. Weingaertner, David; Kalika, Vlad; Perry, Martin, Pre-reformer for selective reformation of higher hydrocarbons.
  36. Pollica,Darryl; Northrop,William F.; Qi,Chunming (Frank C.); Hagan,Mark R.; Smith,Alexis; Clawson,Lawrence, Preferential oxidation reactor temperature regulation.
  37. Rainer Autenrieth DE; Andreas Docter DE; Steffen Wieland DE, Process and apparatus for applying pressure to a reactant.
  38. Perry, Martin; Edmonston, David, SOFC hot box components.
  39. Perry, Martin; Kalika, Vlad; Weingaertner, David; Sundararajan, Ananda; Krishnan, Navaneetha; Basu, Nilanjana; Ramanan, Ram; Bains, Virpaul; Lyle, William David, SOFC hot box components.
  40. Perry, Martin; Krishnan, Navaneetha; Basu, Nilanjana; Ramanan, Ram, SOFC hot box components.
  41. Perry, Martin; Weingaertner, David; Basu, Nilanjana; Petrucha, Michael; Lyle, William David; Krishnan, Navaneetha; Gottmann, Matthias, SOFC hot box components.
  42. Perry, Martin; Weingaertner, David; Basu, Nilanjana; Petrucha, Michael; Lyle, William David; Krishnan, Navaneetha; Gottmann, Matthias, SOFC hot box components.
  43. Venkataraman, Swaminathan; Kalika, Vlad; Weingaertner, David, SOFC hot box components.
  44. Venkataraman, Swaminathan; Kalika, Vlad; Weingaertner, David, SOFC hot box components.
  45. Weingaertner, David; Petrucha, Michael; Perry, Martin; Edmonston, David; Bains, Virpaul; Ta, Andy; Krishnan, Navaneetha, SOFC hot box components.
  46. Ballantine, Arne; Gurunathan, Ranganathan; Pmsvvsv, Prasad; Vishnuvarjula, Anilkumar, Structure and method for fuel cell system where multiple fuel cells and power electronics feed loads in parallel allowing for integrated electrochemical impedance spectroscopy (EIS).
  47. Xu, Jianguo, Use of fuel cell cathode effluent in a fuel reformer to produce hydrogen for the fuel cell anode.
  48. Gottmann, Matthias; Perry, Martin, Voltage lead jumper connected fuel cell columns.
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