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Integrated fuel cell and fuel conversion apparatus 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01M-008/06
출원번호 US-0862953 (1986-05-14)
발명자 / 주소
  • Wertheim Ronald J. (Hartford CT) Sederquist Richard A. (Newington CT)
출원인 / 주소
  • International Fuel Cells Corporation (South Windsor CT 02)
인용정보 피인용 횟수 : 48  인용 특허 : 8

초록

An apparatus for making hydrogen from a hydrocarbon feedstock and steam using heat stored in a vessel followed by the regeneration of the vessel to restore the heat. Regeneration is done by preheating within the vessel a hydrogen purge gas and steam. Downstream of the conventional reform catalyst, t

대표청구항

A fuel cell system comprising: (a) a fuel cell including a fuel electrode, an oxygen electrode, and an electrolyte disposed therebetween; (b) a pair of reaction vessels, each being adapted to alternately make a hydrogen containing gas and to be regenerated, each of said reaction vessels having an up

이 특허에 인용된 특허 (8)

  1. Young John E. (Woodridge IL) Jalan Vinod M. (Concord MA), High-temperature sorbent method for removal of sulfur containing gases from gaseous mixtures.
  2. Sederquist Richard A. (Newington CT), Integrated fuel cell and fuel conversion apparatus.
  3. Sederquist Richard A. (Newington CT), Integrated fuel cell and fuel conversion apparatus.
  4. Jalan Vinod M. (Concord MA) Frost David G. (Maynard MA), Method of removing hydrogen sulfide from gases utilizing a zinc oxide sorbent and regenerating the sorbent.
  5. Sederquist Richard A. (Newington CT), Process for humidifying a gaseous fuel stream.
  6. Sederquist Richard A. (Newington CT), Process for producing hydrogen containing gas.
  7. Sederquist Richard A. (Newington CT), Reaction apparatus for producing a hydrogen containing gas.
  8. Weisz ; Paul B. ; Zahner ; John C., Utilization of low BTU natural gas.

이 특허를 인용한 특허 (48)

  1. Elias Elias R., Apparatus for pumping a fluid in a fuel cell system.
  2. 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.
  3. Bellows Richard James ; Robbins John Lawrence, Carbon monoxide removal method based on a regenerable CO scavenger.
  4. Butler, James Roy; Kelly, Kevin Peter, Catalytic reduction of phenylacetylene in a styrene stream.
  5. Clingerman Bruce J. ; Mowery Kenneth D. ; Ripley Eugene V., Combustor air flow control method for fuel cell apparatus.
  6. Sennoun, Mohammed E. H.; Pettit, William H.; Borup, Rodney L.; Voecks, Gerald E., Compact partial oxidation/steam reactor with integrated air preheater, fuel and water vaporizer.
  7. Doan, Tien M.; Clingerman, Bruce J., Control apparatus and method for efficiently heating a fuel processor in a fuel cell system.
  8. Bruce J. Clingerman ; Donald H. Keskula, Controlled shutdown of a fuel cell.
  9. Kenneth D. Mowery ; Eugene V. Ripley, Flexible method for monitoring fuel cell voltage.
  10. Ohsaki Kozo (Chiba JPX) Okada Mitsuo (Tokyo JPX) Shima Kazumi (Chiba JPX), Fuel cell power generating system.
  11. Keskula, Donald H.; Doan, Tien M.; Clingerman, Bruce J., Fuel cell stack monitoring and system control.
  12. Keskula, Donald H.; Doan, Tien M.; Clingerman, Bruce J., Fuel cell stack monitoring and system control.
  13. Pettit William Henry, Fuel cell system combustor.
  14. Keskula Donald H. ; Doan Tien M. ; Clingerman Bruce J., Fuel cell system logic for differentiating between rapid and normal shutdown commands.
  15. Bruce J. Clingerman ; Tien M. Doan ; Donald H. Keskula, Fuel cell system shutdown with anode pressure control.
  16. Donald H. Keskula ; Bruce J. Clingerman ; Robert W. Chalfant, Fuel cell voltage monitoring and system control.
  17. Goebel, Steven G.; Pettit, William H., Fuel processing system having gas recirculation for transient operations.
  18. Goebel,Stephen G; Pettit,William H, Fuel processing system having gas recirculation for transient operations.
  19. Donald H. Keskula ; Tien M. Doan ; Bruce J. Clingerman, Fuel processor temperature monitoring and control.
  20. Koripella, Chowdary Ramesh; Dyer, Christopher K.; Gervasio, Dominic Francis; Rogers, Stephen P.; Wilcox, David; Ooms, William Jay, Fuel processor with integrated fuel cell utilizing ceramic technology.
  21. James Brian David, Fuel reformer system for a fuel cell.
  22. Grover, Trevor T.; Forte, Jameson R., Gas-liquid separator for fuel cell system.
  23. Trevor T. Grover ; Jameson R. Forte, Gas-liquid separator for fuel cell system.
  24. Briscoe, Michael D., Hydrogen to steam reforming of natural gas to synthesis gas.
  25. Goebel, Steven G.; Pettit, William H.; Burch, Steven D.; Yu, Paul T.; Zhang, Yan; Cartwright, Michael D., Integrated fuel processor for rapid start and operational control.
  26. 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.
  27. Bentley,Jeffrey M.; Clawson,Lawrence G.; Mitchell,William L.; Dorson,Matthew H., Integrated reformer and shift reactor.
  28. Hershkowitz, Frank; Buchanan, John Scott; Deckman, Harry W.; Frederick, Jeffrey W., Methane conversion to higher hydrocarbons.
  29. Hershkowitz, Frank; Buchanan, John Scott; Deckman, Harry W.; Frederick, Jeffrey W., Methane conversion to higher hydrocarbons.
  30. Hershkowitz,Frank; Lattner,James R., Methanol manufacture using pressure swing reforming.
  31. Hershkowitz,Frank; Lattner,James R., Methanol manufacture using pressure swing reforming.
  32. David J. Hart-Predmore ; William H. Pettit, Methanol tailgas combustor control method.
  33. Bruce J. Clingerman ; Robert W. Chalfant, Method and apparatus for controlling combustor temperature during transient load changes.
  34. Bonk Stanley P. ; Corrigan Thomas J. ; Lesieur Roger R. ; Sederquist Richard A. ; Szydlowski Donald F., Method and apparatus for desulfurizing fuel gas.
  35. Borup, Rodney L.; Pettit, William H., Method for operating a combination partial oxidation and steam reforming fuel processor.
  36. Carlo Saling DE; Martin Schuessler DE; Thomas Stefanovski DE, Method for periodically reactivating a copper-containing catalyst material.
  37. Skala, Glenn W; Voecks, Gerald E, Method for starting a primary reactor.
  38. Pettit,William H; Sennoun,Mohammed E. H.; Voecks,Gerald E, Multi-port autothermal reformer.
  39. Goebel, Steven G., Passive element for fuel processor start up transient temperature control.
  40. Pollica,Darryl; Northrop,William F.; Qi,Chunming (Frank C.); Hagan,Mark R.; Smith,Alexis; Clawson,Lawrence, Preferential oxidation reactor temperature regulation.
  41. Hershkowitz,Frank; Deckman,Harry W., Pressure swing reforming.
  42. Hershkowitz,Frank; Berlowitz,Paul J.; Partridge,Randall D., Pressure swing reforming for fuel cell systems.
  43. Baumann,Frank; Wieland,Stefan, Process for preparing a low-sulfur reformate gas for use in a fuel cell system.
  44. Goebel, Steven G.; Pettit, William H.; Sennoun, Mohammed E.H.; Miller, Daniel P., Staged lean combustion for rapid start of a fuel processor.
  45. Bruce J. Clingerman ; Tien M. Doan ; Donald H. Keskula, Staged venting of fuel cell system during rapid shutdown.
  46. Keskula, Donald H.; Doan, Tien M.; Clingerman, Bruce J., Staged venting of fuel cell system during rapid shutdown.
  47. Ballard, Gary L.; Ranelli, David J.; England, Diane M.; Grieve, Malcolm James; Chia, Yee Ho; Fisher, Galen B., System for continuous removal of a specific gas from a flowing mixture of gases.
  48. Grieve,Malcolm James; Weissman,Jeffrey G.; Mukerjee,Subhasish, Trapping method and system for energy conversion devices.
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