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Metal catalyst support having honeycomb structure and method of making same 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01J-035/04
출원번호 US-0367473 (1982-04-12)
발명자 / 주소
  • Retallick William B. (1432 Johnny\s Way West Chester PA 19380)
인용정보 피인용 횟수 : 60  인용 특허 : 4

초록

A honeycomb catalyst support is formed by folding a single strip of metal back and forth upon itself. Each layer in the honeycomb has indentations of uniform height, so that the spacing between layers is equal to this height. A different pattern of indentations is used in alternate layers, and the i

대표청구항

A method of making a metal catalyst support, comprising the steps of: (a) folding a strip of metal back and forth upon itself, while (b) impressing first and second patterns of indentations on opposite sides of the strip, the indentations being of uniform height so that the spacing between layers is

이 특허에 인용된 특허 (4)

  1. Retallick William B. (West Chester PA), Metal catalyst support.
  2. Retallick William B. (West Chester PA), Metal catalyst support having rectangular cross-section.
  3. Davies Richard G. (Dearborn MI), Metallic supported catalytic system and a method of making it.
  4. Cairns ; James Anthony ; Noakes ; Michael Lesney, Methods of fabricating bodies.

이 특허를 인용한 특허 (60)

  1. Valensa, Jeroen; Reinke, Michael J.; Voss, Mark G., Annular or ring shaped fuel cell unit.
  2. Ragland, G. William; Pearce, J. Bradley; Ragland, Christopher V., Apparatus and method for manufacture of multilayer metal products.
  3. Lane, Jonathan A.; Wilson, Jamie R.; Christie, Gervase Maxwell; Petigny, Nathalie; Sarantopoulos, Christos, Catalyst containing oxygen transport membrane.
  4. Muter, John P., Catalyst substrate support.
  5. Retallick William B., Catalytic combustor for a gas turbine.
  6. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  7. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  8. Kelly, Sean M.; Christie, Gervase Maxwell; Rosen, Lee J.; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  9. Lane, Jonathan A.; Lu, Zigui; Plonczak, Pawel J., Composite oxygen ion transport membrane.
  10. Christie, Gervase Maxwell; Lane, Jonathan A., Composite oxygen transport membrane.
  11. Lu, Zigui; Plonczak, Pawel J.; Lane, Jonathan A., Composite oxygen transport membrane.
  12. Maus Wolfgang,DEX ; Bruck Rolf,DEX, Conical honeycomb body with longitudinal structures.
  13. 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.
  14. 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.
  15. Trevisan, David; Daco, Christian; Baugh, David, Fuel cell mechanical components.
  16. Perry, Martin; Ballantine, Arne, Fuel cell stack module shell with integrated heat exchanger.
  17. Perry, Martin; Ballantine, Arne, Fuel cell system components.
  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. Perry, Martin; Venkataraman, Swaminathan, Fuel cell system containing anode tail gas oxidizer and hybrid heat exchanger/reformer.
  21. Lin, Jiefeng; Kelly, Sean M., High aspect ratio catalytic reactor and catalyst inserts therefor.
  22. Weingaertner, David; Venkataraman, Swaminathan, Hot box design with a multi-stream heat exchanger and single air control.
  23. Weingaertner, David; Venkataraman, Swaminathan, Hot box design with a multi-stream heat exchanger and single air control.
  24. Venkataraman, Swaminathan, Hybrid fuel heat exchanger—pre-reformer in SOFC systems.
  25. Venkataraman, Swaminathan; Weingaertner, David; Kalika, Vlad, Integrated fuel line to support CPOX and SMR reactions in SOFC systems.
  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. Mangold,Christian; Mangold,Anton, Metal foil with an embossed structure for use in the purification of exhaust gas and a tool and method for its production.
  29. Retallick William B. (West Chester PA), Metal honeycomb catalyst support having a double taper.
  30. Retallick William B. (West Chester PA), Metal honeycomb catalyst support having a double taper.
  31. Chakravarti, Shrikar; Drnevich, Raymond Francis; Shah, Minish M.; Stuckert, Ines C., Method and system for adjusting synthesis gas module in an oxygen transport membrane based reforming system.
  32. Chakravarti, Shrikar; Drnevich, Raymond Francis; Burgers, Kenneth L., Method and system for producing a synthesis gas in an oxygen transport membrane based reforming system that is free of metal dusting corrosion.
  33. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing a synthesis gas using an oxygen transport membrane based reforming system with secondary reforming and auxiliary heat source.
  34. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing hydrogen using an oxygen transport membrane based reforming system with secondary reforming.
  35. Stuckert, Ines C.; Chakravarti, Shrikar; Drnevich, Raymond F., Method and system for producing methanol using an integrated oxygen transport membrane based reforming system.
  36. Sven Melker Nilsson SE, Method for corrugating a metal foil and packages of such foil.
  37. Gonzalez, Javier E.; Grant, Arthur F., Method for sealing an oxygen transport membrane assembly.
  38. Kelly, Sean M.; Swami, Sadashiv M.; Peck, John D., Method of thermally-stabilizing an oxygen transport membrane-based reforming system.
  39. Konstantin Solntsev RU; Eugene Shustorovich ; Sergei Myasoedov RU; Vyacheslav Morgunov RU; Andrei Chernyavsky RU; Yuri Buslaev RU; Richard Montano ; Alexander Shustorovich, Methods of making sintered metal oxide articles.
  40. Sridhar, K. R.; Venkataraman, Swaminathan; Lyle, William David; Ballantine, Arne, Modular fuel cell system.
  41. Sridhar, K. R.; Venkataraman, Swaminathan; Lyle, William David; Ballantine, Arne Watson, Modular fuel cell system.
  42. Kromer, Brian R.; Litwin, Michael M.; Kelly, Sean M., Oxygen transport membrane based advanced power cycle with low pressure synthesis gas slip stream.
  43. Kelly, Sean M.; Chakravarti, Shrikar; Li, Juan, Oxygen transport membrane reactor based method and system for generating electric power.
  44. Weingaertner, David; Kalika, Vlad; Perry, Martin, Pre-reformer for selective reformation of higher hydrocarbons.
  45. Weingaertner, David; Kalika, Vlad; Perry, Martin, Pre-reformer for selective reformation of higher hydrocarbons.
  46. Perry, Martin; Edmonston, David, SOFC hot box components.
  47. Perry, Martin; Kalika, Vlad; Weingaertner, David; Sundararajan, Ananda; Krishnan, Navaneetha; Basu, Nilanjana; Ramanan, Ram; Bains, Virpaul; Lyle, William David, SOFC hot box components.
  48. Perry, Martin; Krishnan, Navaneetha; Basu, Nilanjana; Ramanan, Ram, SOFC hot box components.
  49. Perry, Martin; Weingaertner, David; Basu, Nilanjana; Petrucha, Michael; Lyle, William David; Krishnan, Navaneetha; Gottmann, Matthias, SOFC hot box components.
  50. Perry, Martin; Weingaertner, David; Basu, Nilanjana; Petrucha, Michael; Lyle, William David; Krishnan, Navaneetha; Gottmann, Matthias, SOFC hot box components.
  51. Venkataraman, Swaminathan; Kalika, Vlad; Weingaertner, David, SOFC hot box components.
  52. Venkataraman, Swaminathan; Kalika, Vlad; Weingaertner, David, SOFC hot box components.
  53. Weingaertner, David; Petrucha, Michael; Perry, Martin; Edmonston, David; Bains, Virpaul; Ta, Andy; Krishnan, Navaneetha, SOFC hot box components.
  54. 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).
  55. Kelly, Sean M., System and method for air temperature control in an oxygen transport membrane based reactor.
  56. Kelly, Sean M., System and method for temperature control in an oxygen transport membrane based reactor.
  57. Solntsev Konstantin,RUX ; Shustorovich Eugene ; Myasoedov Sergei,RUX ; Morgunov Vyacheslav,RUX ; Chernyavsky Andrei,RUX ; Buslaev Yuri,RUX ; Montano Richard, Thin-walled monolithic metal oxide structures made from metals, and methods for manufacturing such structures.
  58. Solntsev Konstantin,RUX ; Shustorovich Eugene ; Myasoedov Sergei,RUX ; Morgunov Vyacheslav,RUX ; Chernyavsky Andrei,RUX ; Buslaev Yuri,RUX ; Montano Richard ; Shustorovich Alexander, Thin-walled monolithic metal oxide structures made from metals, and methods for manufacturing such structures.
  59. Solntsev Konstantin,RUX ; Shustorovich Eugene ; Myasoedov Sergei,RUX ; Morgunov Vyacheslav,RUX ; Chernyavsky Andrei,RUX ; Buslaev Yuri,RUX ; Montano Richard ; Shustorovich Alexander, Thin-walled monolithic metal oxide structures made from metals, and methods for manufacturing such structures.
  60. Gottmann, Matthias; Perry, Martin, Voltage lead jumper connected fuel cell columns.
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