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Synthesis gas conversion using ruthenium-promoted cobalt catalyst 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C07L-001/04
출원번호 US-0635911 (1984-07-30)
발명자 / 주소
  • Beuther Harold (Vero Beach FL) Kobylinski Thaddeus P. (Prospect PA) Kibby Charles L. (Gibsonia PA) Pannell Richard B. (Allison Park PA)
출원인 / 주소
  • Gulf Research & Development Company (Pittsburgh PA 02)
인용정보 피인용 횟수 : 59  인용 특허 : 17

초록

Synthesis gas comprising carbon monoxide and hydrogen is converted to a liquid hydrocarbon by contacting the synthesis gas under conversion conditions with a supported cobalt-ruthenium catalyst in which the cobalt to ruthenium molar ratio is greater than about 200:1. The catalyst is preferably prepa

대표청구항

A process for the conversion of synthesis gas to a product containing liquid hydrocarbons, which comprises contacting a synthesis gas comprising hydrogen and carbon monoxide with an alumina supported cobalt-ruthenium catalyst containing from about 5 to about 30 weight percent cobalt and having a mol

이 특허에 인용된 특허 (17)

  1. Hwang ; H. Shinn ; Taylor ; Paul D., Catalyst for production of acetic acid.
  2. Drake, Charles A., Catalytic hydrogenation of unsaturated dinitriles employing high purity alumina.
  3. Drake Charles A. (Bartlesville OK) Murtha Timothy P. (Bartlesville OK), Cobalt-gold promoter for ruthenium hydrogenation catalyst as in hydrogenation of unsaturated dinitriles.
  4. Haag Werner O. (Lawrenceville NJ) Huang Tracy J. (Trenton NJ), Conversion of synthesis gas to hydrocarbon mixtures.
  5. Kobylinski ; Thaddeus P., Conversion of synthesis gas using a cobalt-ruthenium catalyst.
  6. Fiato Rocco A. (Charleston WV), Homologation process for the production of ethanol from methanol.
  7. Vannice M. Albert (Plainfield NJ) Garten Robert L. (Summit NJ), Hydrocarbon synthesis from CO and H2 using Ru supported on a titanium oxide.
  8. Vannice M. Albert (Boalsburg PA) Tauster Samuel J. (Englishtown NJ), Hydrocarbon synthesis from CO and H2 using Ru supported on group VB metal oxides.
  9. Yoo Jin Sun (South Holland IL), Hydroformylation process over catalyst having silica alumina support with separate alumina phase and noble metal and cob.
  10. Drake Charles A. (Bartlesville OK), Hydrogenation of unsaturated dinitriles for employing palladium and ruthenium catalyst in aqueous tertiary alkanol.
  11. Knifton John F. (Austin TX), Manufacture of vicinal glycol esters from synthesis gas.
  12. Kibby Charles L. (Gibsonia PA) Kobylinski Thaddeus P. (Prospect PA), Method for converting synthesis gas using an activated cobalt-substituted layered aluminosilicate.
  13. Lin Jiang-Jen (Round Rock TX) Knifton John F. (Austin TX), Process for preparing acetaldehyde from methanol and synthesis gas using a novel catalyst composition.
  14. Beuther Harold (Cheswick PA) Kibby Charles L. (Gibsonia PA) Kobylinski Thaddeus P. (Prospect PA) Pannell Richard B. (Allison Park PA), Process for preparing gasoline range hydrocarbons from synthesis gas and catalyst used therefor.
  15. Nakaoji Kozo (Osaka JA), Process for purifying saccharin.
  16. Hwang, H. Shinn; Taylor, Paul D., Production of acetic acid.
  17. Drake Charles A. (Bartlesville OK) Murtha Timothy P. (Bartlesville OK), Ruthenium-cobalt-gold catalyst for hydrogenation of unsaturated dinitriles.

이 특허를 인용한 특허 (59)

  1. Singleton,Alan H.; Oukaci,Rachid; Goodwin,James G., Attrition resistant gamma-alumina catalyst support.
  2. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Biomass high efficiency hydrothermal reformer.
  3. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Biomass high efficiency hydrothermal reformer.
  4. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Biomass high efficiency hydrothermal reformer.
  5. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Biomass high efficiency hydrothermal reformer.
  6. Chigapov, Albert; Carberry, Brendan; Susdorf, Alexander, Carbon monoxide catalyst.
  7. Daage, Michel A.; Koveal, Russell John; Long, David Chester; Clavenna, Leroy Russell; Ramanarayaman, Trikur Anantharaman; Mumford, James Dirickson; Culross, Claude Clarence, Carbon monoxide hydrogenation process.
  8. Beuther Harold (Cheswick PA) Kibby Charles L. (Gibsonia PA) Kobylinski Thaddeus P. (Prospect PA) Pannell Richard B. (Allison Park PA), Catalyst for conversion of synthesis gas to diesel fuel and process for preparation of such catalyst.
  9. Eri, Sigrid; Rytter, Erling; Myrstan, Rune, Catalyst treatment.
  10. Lok, Martinus C; Kelly, Gordon J; Gray, Gavin, Catalysts with high cobalt surface area.
  11. Lok,Martinus C.; Kelly,Gordon J.; Gray,Gavin, Catalysts with high cobalt surface area.
  12. Lok,Martinus G.; Kelly,Gordon J.; Gray,Gavin, Catalysts with high cobalt surface area.
  13. Beer Gary L. ; Leahy James F. ; Lisewsky Greg A. ; McHugh Kernan J. ; Briscoe Michael D., Extended catalyst life Fischer-Tropsch process.
  14. Beer Gary L., Extended catalyst life two stage hydrocarbon synthesis process.
  15. Singleton Alan H. ; Oukaci Rachid ; Goodwin James G., Fischer-Tropsch activity for non-promoted cobalt-on-alumina catalysts.
  16. Lapidus, Albert L'Vovich; Krylova, Alla Jurievna; Sineva, Lilia Vadimovna; Koveal, Russell John; Daage, Michel A., Fischer-Tropsch catalyst enhancement.
  17. Michel A. Daage ; Russell John Koveal ; Albert L'Vovich Lapidus RU; Alla Jurievna Krylova RU; Shawn Paul Brennan, Fischer-Tropsch catalyst enhancement.
  18. Rytter, Erling; Eri, Sigrid; Myrstad, Rune; Lindvåg, Odd Asbjørn, Fischer-Tropsch catalysts.
  19. Rytter, Erling; Skagseth, Torild Hulsund; Wigum, Hanne; Sincadu, Nonyameko, Fischer-Tropsch catalysts.
  20. Srinivasan, Nithya; Espinoza, Rafael L.; Coy, Kevin L.; Jothimurugesan, Kandaswamy, Fischer-Tropsch catalysts using multiple precursors.
  21. LeViness, Stephen Claude; Daly, Francis; Richard, Laura Amanda; Rugmini, Sreekala, Fischer-Tropsch process.
  22. LeViness, Stephen Claude; Daly, Francis; Richard, Laura; Rugmini, Sreekala, Fischer-Tropsch process.
  23. Rytter, Erling; Borg, Øyvind; Eri, Sigrid; Sperle, Thomas, Fischer-Tropsch synthesis.
  24. Wang, Yong; Tonkovich, Anna Lee; Mazanec, Terry; Daly, Francis P.; VanderWiel, Dave; Hu, Jianli; Cao, Chunshe; Kibby, Charles; Li, Xiaohong Shari; Briscoe, Michael D.; Gano, Nathan; Chin, Ya-Huei, Fischer-Tropsch synthesis using microchannel technology and novel catalyst and microchannel reactor.
  25. Wang, Yong; Tonkovich, Anna Lee; Mazanec, Terry; Daly, Francis P.; VanderWiel, Dave; Hu, Jianli; Cao, Chunshe; Kibby, Charles; Li, Xiaohong; Briscoe, Michael D.; Gano, Nathan; Chin, Ya-Huei, Fischer-Tropsch synthesis using microchannel technology and novel catalyst and microchannel reactor.
  26. Koranne, Manoj M.; Rytter, Erling; Eri, Sigrid; Borg, Oyvind, Fischer-tropsch catalysts.
  27. White,James H.; Taylor,Jesse W., Fischer-tropsch catalysts.
  28. Srinivasan,Nithya; Espinoza,Rafael L.; Coy,Kevin L.; Jothimurugesan,Kandaswamy, Fischer-tropsch catalysts using multiple precursors.
  29. Wang, Yong; Tonkovich, Anna Lee; Mazanec, Terry; Daly, Francis P.; VanderWiel, Dave; Hu, Jianli; Cao, Chunshe; Kibby, Charles; Li, Xiaohong; Briscoe, Michael D.; Gano, Nathan; Chin, Ya-Huei, Fischer-tropsch synthesis using microchannel technology and novel catalyst and microchannel reactor.
  30. Wang,Yong; Tonkovich,Anna Lee; Mazanec,Terry; Daly,Francis P.; VanderWiel,Dave; Hu,Jianli; Cao,Chunshe; Kibby,Charles; Li,Xiaohong Shari; Briscoe,Michael D.; Gano,Nathan; Chin,Ya Huei, Fischer-tropsch synthesis using microchannel technology and novel catalyst and microchannel reactor.
  31. Leviness, Stephen C., Fischer-trospch and oxygenate synthesis catalyst activation/regeneration in a micro scale process.
  32. Hu, X. D.; Loi, Patrick J.; O'Brien, Robert J., High surface area, small crystallite size catalyst for Fischer-Tropsch synthesis.
  33. Hu,X. D.; Loi,Patrick J.; O'Brien,Robert J., High surface area, small crystallite size catalyst for Fischer-Tropsch synthesis.
  34. Singleton, Alan H.; Oukaci, Rachid, Highly active fischer-tropsch catalyst having increased thermal stability.
  35. Lomax, Franklin D.; Zakaria, Rama A.; Lyubovsky, Maxim; Leviness, Stephen C., Hydrogenating pre-reformer in synthesis gas production processes.
  36. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Integrated biorefinery for production of liquid fuels.
  37. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Integrated biorefinery for production of liquid fuels.
  38. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Integrated biorefinery for production of liquid fuels.
  39. Blevins, Randy; Pearson, Joshua B.; Wright, Harold A., Integrated biorefinery for production of liquid fuels.
  40. Raje,Ajoy P.; Espinoza,Rafael, Method for improved Fischer-Tropsch catalyst stability and higher stable syngas conversion.
  41. Wang, Yong; Tonkovich, Anna Lee; Mazanec, Terry; Daly, Francis P.; VanderWiel, Dave; Hu, Jianli; Cao, Chunshe; Kibby, Charles; Li, Xiaohong Shari; Briscoe, Michael D.; Gano, Nathan; Chin, Ya-Huei, Microchannel reactor.
  42. Tonkovich, Anna Lee; Qiu, Dongming; Long, Richard Q.; Yang, Barry L.; Yuschak, Thomas; Perry, Steven T., Microchannel with internal fin support for catalyst or sorption medium.
  43. Espinoza, Rafael L.; Agee, Kenneth L., Optimized fischer-tropsch catalyst.
  44. Espinoza, Rafael L.; Agee, Kenneth L., Optimized fischer-tropsch catalyst.
  45. Kibby, Charles L.; Haas, Alfred, Preparation of cobalt-ruthenium fischer-tropsch catalysts.
  46. Kibby, Charles L.; Haas, Alfred, Preparation of cobalt-ruthenium/zeolite Fischer-Tropsch catalysts.
  47. Wright, Harold A.; Raje, Ajoy P.; Espinoza, Rafael L., Pressure swing catalyst regeneration procedure for Fischer-Tropsch catalyst.
  48. Wright, Harold A.; Raje, Ajoy P.; Espinoza, Rafael L., Pressure swing catalyst regeneration procedure for Fischer-Tropsh catalyst.
  49. Van Berge, Peter Jacobus; Visagie, Jacobus Lucas; Van De Loosdrecht, Jan; Van Der Walt, Tjaart Jurgens; Sollie, Johan Coenraad; Sollie Breur, legal representative, Sylvia; Veltman, Hans Marcel, Process for activating cobalt catalysts.
  50. Dai ; deceased Pei-Sing ; Harrison Jeffrey B. ; Nongbri Govanon ; Shah Lalit ; Vakil Kamlesh B., Process for optimizing hydrocarbon synthesis.
  51. Bezemer, Gerrit Leendert; Stobbe, Erwin Roderick, Process for preparing a chlorine comprising catalyst, the prepared catalyst, and its use.
  52. Van Bavel, Alexander Petrus; Bezemer, Gerrit Leendert; Van Den Brink, Peter John; Stobbe, Erwin Roderick, Process for preparing a chlorine comprising catalyst, the prepared catalyst, and its use.
  53. Van Bavel, Alexander Petrus; Bezemer, Gerrit Leendert; Van Den Brink, Peter John; Stobbe, Erwin Roderick, Process for preparing a chlorine comprising catalyst, the prepared catalyst, and its use.
  54. Marion, Marie-Claire; Diehl, Fabrice; Hugues, Francois, Process for production of hydrocarbons with catalyst conditioning.
  55. Zennaro Roberto,ITX ; Gusso Andrea,ITX ; Chaumette Patrick,FRX, Process for the preparation of a catalyst based on cobalt and scandium.
  56. Saxton, Robert J.; Kibby, Charles L.; Jothimurugesan, Kandaswamy; Das, Tapan, Process of synthesis gas conversion to liquid hydrocarbon mixtures using alternating layers of synthesis gas conversion catalyst and hydrocracking catalyst.
  57. Saxton, Robert J.; Kibby, Charles L.; Jothimurugesan, Kandaswamy; Das, Tapan, Process of synthesis gas conversion to liquid hydrocarbon mixtures using alternating layers of synthesis gas conversion catalyst, hydrocracking and hydroisomerization catalyst.
  58. Singleton Alan H. ; Oukaci Rachid ; Goodwin James G., Reducing fischer-tropsch catalyst attrition losses in high agitation reaction systems.
  59. Harold A. Wright, Regeneration procedure for Fischer-Tropsch catalyst.
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