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[미국특허] Catalyst for the production of hydrocarbons from the synthesis gas 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01J-029/10
  • B01J-029/20
출원번호 US-0680244 (1984-12-11)
우선권정보 JP-0073448 (1981-05-18); JP-0150597 (1981-09-25)
발명자 / 주소
  • Koikeda Minoru (Yokohama JPX) Suzuki Takashi (Yokohama JPX) Munemura Koutaro (Zama JPX) Nishimoto Yoshihiko (Hiroshima JPX) Imai Tetsuya (Hiroshima JPX)
출원인 / 주소
  • Research Association for Petroleum Alternatives Development (Tokyo JPX 03)
인용정보 피인용 횟수 : 37  인용 특허 : 8

초록

An improved catalyst suitable for use in the production of hydrocarbons from the synthesis gas comprises an iron-containing Fischer-Tropsch catalyst, a zeolite and at least one metal selected from the group consisting of ruthenium, rhodium, platinum, palladium, iridium, cobalt and molybdenum. This c

대표청구항

A catalyst for the production of hydrocarbons from the synthesis gas, which comprises the combination of an iron-containing Fischer-Tropsch catalyst, a zeolite and at least one metal selected from the group consisting of ruthenium, rhodium, platinum, palladium, iridium, cobalt and molybdenum, said m

이 특허에 인용된 특허 (8) 인용/피인용 타임라인 분석

  1. Bartish ; Charles M., Catalytic synthesis of low molecular weight hydrocarbons.
  2. Brennan James A. (Cherry Hill NJ) Caesar Philip D. (Princeton NJ) Ciric Julius (Pitman NJ) Garwood William E. (Haddonfield NJ) Holland Robert E. (Runnemede NJ), Conversion of syngas to high octane olefinic naphtha.
  3. Chang ; Clarence D. ; Lang ; William H. ; Silvestri ; Anthony J., Conversion of synthesis gas to hydrocarbon mixtures.
  4. Haag Werner O. (Lawrenceville NJ) Huang Tracy J. (Trenton NJ), Conversion of synthesis gas to hydrocarbon mixtures.
  5. Haag Werner O. (Lawrenceville NJ) Huang Tracy J. (Trenton NJ), Conversion of synthesis gas to hydrocarbon mixtures utilizing dual reactors.
  6. Coughlin, Peter K.; Rabo, Jule A., Enhanced catalyst for conversion of syngas to liquid motor fuels.
  7. Coughlin Peter K. (Yorktown Heights NY), Enhanced catalyst for converting synthesis gas to liquid motor fuels.
  8. Lucki Stanley J. (Runnemede NJ) Brennan James A. (Cherry Hill NJ), Method for regeneration and activity improvement of syngas conversion catalyst.

이 특허를 인용한 특허 (37) 인용/피인용 타임라인 분석

  1. Ogawa Hiroshi,JPX ; Ito Yukio,JPX ; Nakano Masao,JPX ; Itabashi Keiji,JPX, Adsorbent for ethylene, method for adsorbing and removing ethylene and method for purifying an exhaust gas.
  2. Ogawa Hiroshi,JPX ; Ito Yukio,JPX ; Nakano Masao,JPX ; Itabashi Keiji,JPX, Adsorbent for ethylene, method for adsorbing and removing ethylene and method for purifying an exhaust gas.
  3. Jothimurugesan,Kandaswamy; Goodwin, Jr.,James G.; Gangwal,Santosh K., Attrition resistant bulk iron catalysts and processes for preparing and using same.
  4. Kurachi, Saeko, Carbon monoxide selective oxidizing catalyst and manufacturing method for the same.
  5. Kurachi,Saeko, Carbon monoxide selective oxidizing catalyst and manufacturing method for the same.
  6. Pederzani, Giovanni; Zennaro, Roberto; Morselli, Sonia; Del Piero, Gastone, Catalyst based on cobalt and its use in the fischer-tropsch process.
  7. Kimble, James B.; Yao, Jianhua, Catalyst composition comprising ruthenium and a treated silica support component and processes therefor and therewith for preparing high molecular weight hydrocarbons such as polymethylene.
  8. Yao,Jianhua; Kimble,James B., Catalyst composition comprising ruthenium and a treated silica support component and processes therefor and therewith for preparing high molecular weight hydrocarbons such as polymethylene.
  9. Kallenbach, Lyle R.; Yao, Jianhua; Kimble, James B., Catalyst composition comprising ruthenium and zirconium and processes therefor and therewith for preparing high molecular weight hydrocarbons such as polymethylene.
  10. O'Rear, Dennis J., Conversion of syngas to distillate fuels.
  11. Imai Tetsuya (Hiroshima JPX) Fujita Hiroshi (Hiroshima JPX) Koikeda Minoru (Yokohama JPX) Suzuki Takashi (Yokohama JPX), Crystalline silicates, and processes for the production or use thereof.
  12. Chen, Laiyuan; Weissman, Jeffrey G., Fuel reformer catalyst.
  13. Kibby Charles L., Increased liquid sensitivity during fischer-tropsch synthesis by olefin incorporation.
  14. Woodfield, Brian F.; Bartholomew, Calvin H.; Brunner, Kyle; Hecker, William; Ma, Xuchu; Xu, Fen; Astle, Lynn, Iron and cobalt based fischer-tropsch pre-catalysts and catalysts.
  15. Sapienza Richard S. (Shoreham NY) Slegeir William A. (Hampton Bays NY), Iron catalyst for preparation of polymethylene from synthesis gas.
  16. Sapienza Richard S. (1 Miller Ave. Shoreham NY 11786) Slegeir William A. (7 Florence Rd. Hampton Bays NY 11946), Iron catalyst for preparation of polymethylene from synthesis gas and method for producing the catalyst.
  17. Carroll, Robert W.; Carroll, Noel; Carroll, William F.; Carroll, Michael, Method and composition for improving fuel combustion.
  18. Carroll, Robert Wilfred; Carroll, Noel; Carroll, William F.; Carroll, Michael, Method and composition for improving fuel combustion.
  19. Carroll,Robert W.; Carroll,Noel; Carroll,William F.; Carroll,Michael, Method and composition for improving fuel combustion.
  20. Ogawa Hiroshi,JPX ; Ito Yukio,JPX ; Nakano Masao,JPX ; Itabashi Keiji,JPX, Method for adsorbing and removing ethylene and method for purifying an exhaust gas.
  21. Raje,Ajoy P.; Espinoza,Rafael, Method for improved Fischer-Tropsch catalyst stability and higher stable syngas conversion.
  22. Bartholomew, Calvin H.; Woodfield, Brian F.; Huang, Baiyu; Olsen, Rebecca Elizabeth; Astle, Lynn, Method for making highly porous, stable metal oxides with a controlled pore structure.
  23. Khosravi-Mardkhe, Maryam; Woodfield, Brian F.; Bartholomew, Calvin H.; Huang, Baiyu, Method of making highly porous, stable aluminum oxides doped with silicon.
  24. Hyman, Richard, Methods of preparation and forming supported active metal catalysts and precursors.
  25. Costa, Alexandre de Figueiredo; Feliu, Agustin Martines; Martinez, Joan Rollán; Cerqueira, Henrique Soares; Dias Junior, Joberto Ferreira; Aguiar, Eduardo Falabella Sousa, Process for the production of hybrid catalysts for fischer-tropsch synthesis and hybrid catalyst produced according to said process.
  26. Abbaslou, Reza; Dalai, Ajay, Promoted iron catalysts supported on carbon nanotubes for fischer-tropsch synthesis.
  27. Duvenhage, Dawid J.; Demirel, Belma, Promoted, attrition resistant, silica supported precipitated iron catalyst.
  28. Duvenhage, Dawid J.; Demirel, Belma, Promoted, attrition resistant, silica supported precipitated iron catalyst.
  29. Duvenhage, Dawid J.; Demirel, Belma, Promoted, attrition resistant, silica supported precipitated iron catalyst.
  30. Jothimurugesan, Kandaswamy; Das, Tapan; Kibby, Charles L.; Saxton, Robert J., Ruthenium hybrid fischer-tropsch catalyst, and methods for preparation and use thereof.
  31. Woodfield, Brian F.; Smith, Stacey; Selck, David; Bartholomew, Calvin H.; Ma, Xuchu; Xu, Fen; Olsen, Rebecca E.; Astle, Lynn, Single reaction synthesis of texturized catalysts.
  32. Severinsky, Alexander J., Systems, methods, and compositions for production of synthetic hydrocarbon compounds.
  33. Severinsky, Alexander J., Systems, methods, and compositions for production of synthetic hydrocarbon compounds.
  34. Severinsky, Alexander J., Systems, methods, and compositions for production of synthetic hydrocarbon compounds.
  35. Severinsky, Alexander J., Systems, methods, and compositions for production of synthetic hydrocarbon compounds.
  36. Severinsky, Alexander J., Systems, methods, and compositions for production of synthetic hydrocarbon compounds.
  37. Cook Bruce Randall ; Berlowitz Paul Joseph ; Rucker Rebecca Lynn, Use of infrared spectroscopy to produce high lubricity, high stability, Fischer-Tropsch diesel fuels and blend stocks.

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