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Hydrogen and carbon monoxide production by partial oxidation of hydrocarbon feed 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C01B-003/02
  • C01B-003/24
  • C01B-003/26
출원번호 US-0236282 (1994-05-02)
발명자 / 주소
  • Kapoor Akhilesh (South Orange NJ) Krishnamurthy Ramachandran (Chestnut Ridge NY) MacLean Donald L. (Clinton NJ)
출원인 / 주소
  • The BOC Group, Inc. (New Providence NJ 02)
인용정보 피인용 횟수 : 39  인용 특허 : 0

초록

Synthesis gas comprising hydrogen, water, carbon monoxide, carbon dioxide, and hydrocarbons is produced by contacting a gasified hydrocarbon feedstock and an oxidant in a partial oxidation reactor under at least 95% carbon monoxide selective, low hydrocarbon conversion conditions wherein the tempera

대표청구항

A process for producing high purity hydrogen and high purity carbon monoxide comprising: (a) contacting in a reaction zone a hydrocarbon feedstock comprising one or more gaseous or liquid hydrocarbons with an oxidant and one or both of carbon dioxide and steam as moderating agent at a temperature in

이 특허를 인용한 특허 (39)

  1. Golden, Timothy Christopher; Weist, Jr., Edward Landis; Hufton, Jeffrey Raymond; Novosat, Paul Anthony, Adsorption process to recover hydrogen from feed gas mixtures having low hydrogen concentration.
  2. Grover, Bhadra S.; Wentink, Paul, Apparatus and methods for gas separation.
  3. Shah, Minish Mahendra; Kumar, Ravi; Howard, Henry Edward; Neu, Bernard Thomas; Bonaquist, Dante Patrick; Billingham, John Fredric, Carbon dioxide production method.
  4. Hartvigsen, Joseph J.; Nair, Balakrishnan G.; Wilson, Merrill; Akash, Akash, Catalytic microchannel reformer.
  5. Hartvigsen, Joseph J.; Nair, Balakrishnan; Wilson, Merrill; Akash, Akash, Catalytic microchannel reformer.
  6. Kong,Peter C., Chemical reactor and method for chemically converting a first material into a second material.
  7. Kong, Peter C., Chemical reactor for converting a first material into a second material.
  8. Kong, Peter C., Combustion flame-plasma hybrid reactor systems, and chemical reactant sources.
  9. Bergman ; Jr. Thomas John ; Billingham John Fredric ; Couche Michael Robert ; Shah Minish Mahendra, Cryogenic system for producing carbon monoxide.
  10. Zeng, Yongxian; Tamhankar, Satish S.; Ramprasad, Narayanan; Jain, Ravi; MacLean, Donald L., Cyclic autothermal hydrocarbon reforming process.
  11. Detering,Brent A.; Kong,Peter C., Fast-quench reactor for hydrogen and elemental carbon production from natural gas and other hydrocarbons.
  12. John Erling Anderson ; Arthur Wellington Francis, Jr. ; Matthew Lincoln Wagner ; Christopher Brian Leger, Hot gas reactor and process for using same.
  13. Yongxian Zeng ; Ravi Jain ; Satish S. Tamhankar ; Donald L. MacLean ; Narayanan Ramprasad, Hydrocarbon partial oxidation process.
  14. 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.
  15. Rolland, Matthieu; Lemarie, Eric; Boudet, Nicolas; Seiler, Jean-Marie; Rouge, Sylvie, Method for producing a purified synthesis gas from a biomass including a purification step upstream from the partial oxidation.
  16. Nakao, Noboru; Yamashita, Takeshi; Fujisawa, Akitoshi; Yura, Keita, Method of producing high-purity hydrogen.
  17. Northrop, P. Scott; Wu, Francis S.; Wu, legal representative, Margaret; Sundaram, Narasimhan, Method of purifying hydrocarbons and regeneration of adsorbents used therein.
  18. Johnson, Dennis E. J.; Abramov, Grigori A.; Kleinke, Richard A.; Wiley, Marcus A., Methods and apparatus for solid carbonaceous materials synthesis gas generation.
  19. Johnson, Dennis E. J.; Abramov, Grigori A.; Kleinke, Richard A.; Wiley, Marcus A., Methods and apparatus for solid carbonaceous materials synthesis gas generation.
  20. Johnson, Dennis E. J.; Abramov, Grigori A.; Kleinke, Richard A.; Wiley, Marcus A., Methods and apparatus for solid carbonaceous materials synthesis gas generation.
  21. Johnson, Dennis E. J.; Abramov, Grigori A.; Kleinke, Richard A.; Wiley, Marcus A., Methods and apparatus for solid carbonaceous materials synthesis gas generation.
  22. Johnson, Dennis E. J.; Abramov, Grigori A.; Kleinke, Richard A.; Wiley, Marcus A., Methods for removing impurities from water.
  23. Reddy, Satish, PSA sharing.
  24. Pollica,Darryl; Northrop,William F.; Qi,Chunming (Frank C.); Hagan,Mark R.; Smith,Alexis; Clawson,Lawrence, Preferential oxidation reactor temperature regulation.
  25. Baksh, Mohamed Safdar Allie; Terbot, Charles Edward, Pressure swing adsorption process for the production of hydrogen.
  26. Baksh, Mohamed Safdar Allie; Ackley, Mark William; Notaro, Frank, Process and adsorbent for hydrogen purification.
  27. Millet, Cyrille; Gary, Daniel; Arpentinier, Philippe, Process for production of hydrogen by partial oxidation of hydrocarbons.
  28. Drnevich, Raymond Francis; Schwartz, Joseph Michael; Shah, Minish Mahendra; Bonaquist, Dante Patrick, Producing metal and carbon dioxide with hydrogen recycle.
  29. Drnevich, Raymond Francis; Schwartz, Joseph Michael; Shah, Minish Mahendra; Bonaquist, Dante Patrick, Producing metal and carbon dioxide with hydrogen recycle.
  30. Kapoor Akhilesh ; Chen Yudong ; Davies Simon Paul,GBX ; Kumar Ravi ; Thorogood Robert Michael,GBX, Production of carbon monoxide from syngas.
  31. Zeng,Yongxian; Wolf,Rudolph J.; Fitch,Frank R.; B체low,Martin; Tamhankar,Satish S.; Acharya,Divyanshu R., Supported perovskite-type oxides and methods for preparation thereof.
  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. Detering Brent A. ; Kong Peter C., Thermal device and method for production of carbon monoxide and hydrogen by thermal dissociation of hydrocarbon gases.
  38. Fincke, James R.; Detering, Brent A., Thermal synthesis apparatus.
  39. Fincke, James R.; Detering, Brent A., Thermal synthesis apparatus and process.
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