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Catalyst for manufacturing hydrogen or synthesis gas and manufacturing method of hydrogen or synthesis gas 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C01B-003/26
  • C22B-005/12
  • H01M-008/10
  • B01J-023/72
  • B01J-023/755
출원번호 US-0319530 (1999-06-04)
우선권정보 JP-0274114 (1997-10-07); JP-0274115 (1997-10-07); JP-0106829 (1998-04-17); JP-0106830 (1998-04-17); JP-0106831 (1998-04-17); JP-0106832 (1998-04-17); JP-0106833 (1998-04-17)
국제출원번호 PCT/JP98/02640 (1998-06-16)
§371/§102 date 19990604 (19990604)
국제공개번호 WO99/17875 (1999-04-15)
발명자 / 주소
  • Tsutomu Shikada JP
  • Yotaro Ohno JP
  • Norio Inoue JP
  • Masatsugu Mizuguchi JP
  • Keiji Tomura JP
  • Takeshi Furukawa JP
  • Takuya Kadowaki JP
  • Sadayoshi Iwabuchi JP
  • Takashi Ogawa JP
  • Masami Ono JP
출원인 / 주소
  • NKK Corporation JP
대리인 / 주소
    Flynn, Thiel, Boutell & Tanis, P.C.
인용정보 피인용 횟수 : 59  인용 특허 : 2

초록

This invention provides a catalyst for producing hydrogen gas from a mixed gas comprising dimethyl ether and water vapor or carbon dioxide gas, which comprises copper, iron, cobalt, palladium, iridium, platinum, rhodium, or nickel as an active component, and a method of producing synthesis gas or hy

대표청구항

1. A method of producing synthesis gas comprising the step of contacting a mixed gas comprising dimethyl ether and carbon dioxide gas with a catalyst, the catalyst comprising copper or iron as an active component.

이 특허에 인용된 특허 (2)

  1. Kleefisch Mark S. ; Udovich Carl A. ; Bhattacharyya Alakananda ; Kobylinski Thaddeus P., Autothermic reactor and process using oxygen ion--conducting dense ceramic membrane.
  2. Bhattacharyya Alakananda (Wheaton IL) Basu Arunabha (Naperville IL), Process for hydroshifting dimethyl ether.

이 특허를 인용한 특허 (59)

  1. Andersson, Lennart; Jozsa, Peter, Auxiliary power unit.
  2. Chheda, Juben Nemchand; Ortiz-Soto, Lorna Beatriz; Powell, Joseph Broun, Biofuels via hydrogenolysis and dehydrogenation-condensation.
  3. Chheda, Juben Nemchand; Johnson, Kimberly Ann; Powell, Joseph Broun, Biofuels via hydrogenolysis-condensation.
  4. Chheda, Juben Nemchand; Johnson, Kimberly Ann; Powell, Joseph Broun, Biofuels via hydrogenolysis-condensation.
  5. Chellappa, Anand, Catalyst incorporation in a microreactor.
  6. Chellappa,Anand, Catalyst incorporation in a microreactor.
  7. Cortright, Randy D.; Vollendorf, Nicholas W.; Hornemann, Charles C.; McMahon, Shawn P., Catalysts and methods for reforming oxygenated compounds.
  8. Faria, Jimmy A.; Nelson, Jon M.; Paul, Uchenna P.; Smith, Danielle K., Catalysts for renewable hydrogen production from oxygenated feedstocks.
  9. Carpenter, Ian William; Hayes, John William, Catalytic generation of hydrogen.
  10. Fan, Liang-Shih; Li, Fanxing; Wang, Fei; Tong, Andrew S.; Karri, Surya B. R.; Findlay, John G.; Knowlton, Ted M.; Cocco, Raymond A., Circulating fluidized bed with moving bed downcomers and gas sealing between reactors.
  11. Avart, Pascal; Girard, Jérôme; Mure, Geneviéve; Pousset, Emmanuel, Combined installation for the treatment of steel work gases.
  12. Fan, Liang-Shih; Li, Fanxing, Conversion of carbonaceous fuels into carbon free energy carriers.
  13. Fan, Liang-Shih; Li, Fanxing, Conversion of carbonaceous fuels into carbon free energy carriers.
  14. Takeishi,Kaoru; Yamamoto,Kosei, Dimethyl ether steam reforming catalyst and method for producing the same.
  15. Chheda, Juben Nemchand; Ortiz-Soto, Lorna Beatriz; Powell, Joseph Broun, Direct aqueous phase reforming and aldol condensation to form bio-based fuels.
  16. Chheda, Juben Nemchand; Powell, Joseph Broun, Direct aqueous phase reforming of bio-based feedstocks.
  17. Chheda, Juben Nemchand; Powell, Joseph Broun, Direct aqueous phase reforming of bio-based feedstocks.
  18. Chen, Laiyuan; Weissman, Jeffrey G., Fuel reformer catalyst.
  19. Marion, Philippe; Rosier, Cécile, Hydrogen generating system and hydrodehalogenation method.
  20. Fan, Liang-Shih; Li, Fanxing; Zeng, Liang; Sridhar, Deepak, Integration of reforming/water splitting and electrochemical systems for power generation with integrated carbon capture.
  21. Bauldreay, Joanna Margaret; Blommel, Paul George; Cortright, Randy Douglas; Price, Richard John, Liquid fuel compositions.
  22. Bauldreay, Joanna Margaret; Blommel, Paul George; Cortright, Randy Douglas; Price, Richard John, Liquid fuel compositions.
  23. Bauldreay, Joanna Margaret; Blommel, Paul George; Cortright, Randy Douglas; Price, Richard John, Liquid fuel compositions.
  24. Bauldreay, Joanna Margaret; Blommel, Paul George; Cortright, Randy Douglas; Price, Richard John, Liquid fuel compositions.
  25. Cortright, Randy D.; Dumesic, James A., Low-temperature hydrocarbon production from oxygenated hydrocarbons.
  26. Cortright, Randy D.; Dumesic, James A., Low-temperature hydrogen production from oxygenated hydrocarbons.
  27. Cortright, Randy D.; Dumesic, James A., Low-temperature hydrogen production from oxygenated hydrocarbons.
  28. Cortright, Randy D.; Dumesic, James A., Low-temperature hydrogen production from oxygenated hydrocarbons.
  29. Cortright, Randy D.; Dumesic, James A., Low-temperature hydrogen production from oxygenated hydrocarbons.
  30. H��lzle,Markus; Sprague,Michael Jolyon; Harth,Klaus; Sch��ssler,Martin; Karl,Martin; Boneberg,Stefan, Methanol reforming catalyst having a reduced volume shrinkage.
  31. Berkson, Bruce R., Method for creating energy sources for a vehicle drive system.
  32. Berkson,Bruce R., Method for creating energy sources for a vehicle drive system.
  33. Chellappa, Anand; Call, Charles; Powell, Michael, Method for reducing coking in a hydrogen generation reactor chamber.
  34. De Miranda, Paulo Emilio Valadao; Venancio, Selma Aparecida; De Miranda, Hugo Vilela, Method for the direct oxidation and/or internal reforming of ethanol, solid oxide fuel cell for direct oxidation and/or internal reforming of ethanol, catalyst and multifunctional electrocatalytic anode for direct oxidation and/or internal.
  35. Cortright, Randy D.; Rozmiarek, Robert T.; Hornemann, Charles C., Method of producing gaseous products using a downflow reactor.
  36. Cortright, Randy D., Methods and systems for generating polyols.
  37. Cortright, Randy D., Methods and systems for generating polyols.
  38. Cortright, Randy D., Methods and systems for generating polyols.
  39. Cortright, Randy D., Methods and systems for generating polyols.
  40. Fan, Liang-Shih; Luo, Siwei; Zeng, Liang, Methods for fuel conversion.
  41. Ernst,Richard D.; Eyring,Edward M.; Turpin,Gregory C.; Dunn,Brian C., Methods of selectively incorporating metals onto substrates.
  42. Fan, Liang-Shih; Sridhar, Deepak; Li, Fanxing, Oxygen carrying materials.
  43. Nielsen, Poul Erik Højlund; Hansen, John Bøgild; Schiødt, Niels Christian, Process for the preparation of a hydrogen-rich stream.
  44. Avart, Pascal; Girard, Jerome; Mure, Genevieve; Pousset, Emmanuel, Process for the treatment of steel work gases.
  45. Kato,Toru; Amano,Masatsugu; Nozaki,Ken; Kato,Ken; Negishi,Akira, Reforming apparatus for fuel cell, fuel cell and operation method of fuel cell.
  46. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  47. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  48. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  49. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  50. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  51. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  52. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  53. Cortright, Randy D.; Blommel, Paul G., Synthesis of liquid fuels and chemicals from oxygenated hydrocarbons.
  54. Cortright, Randy D.; Blommel, Paul G.; Werner, Michael J.; Vanstraten, Matthew R., Synthesis of liquid fuels from biomass.
  55. Fan, Liang-Shih; Li, Fanxing; Zeng, Liang, Synthetic fuels and chemicals production with in-situ CO2 capture.
  56. Fan, Liang-Shih; Li, Fanxing; Zeng, Liang, Synthetic fuels and chemicals production with in-situ CO2 capture.
  57. Fan, Liang-Shih; Wang, Dawei, Systems and methods for converting carbonaceous fuels.
  58. Fan, Liang-Shih; Kathe, Mandar; Wang, William; Chung, Elena; Tong, Andrew, Systems and methods for partial or complete oxidation of fuels.
  59. Fan, Liang-Shih; Kim, Hyung R.; Li, Fanxing; Zeng, Liang; Wang, Dawei; Wang, Fei, Systems for converting fuel.
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