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Process for burning combustible mixtures 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F23D-021/00
출원번호 US-0088614 (1993-07-06)
발명자 / 주소
  • Tsurumi Kazunori (Fujisawa JPX) Ezawa Nobuyasu (Koto CA JPX) Dalla Betta Ralph A. (Mountain View CA)
출원인 / 주소
  • Catalytica, Inc. (Mountain View CA 02) Tanaka Kikinzoku Kogyo K.K. (JPX 03)
인용정보 피인용 횟수 : 50  인용 특허 : 0

초록

This invention is a process for catalytically burning a combustible mixture of a fuel and an oxygen-containing gas. In particular, the invention is a process for producing a combustion gas at a selected temperature, preferably between 1050°C. and 1700°C., by introducing all of the fuel necessary to

대표청구항

A catalytic process for producing a combustion gas having a temperature between 1050°C. and 1700°C., the process comprising the steps of: a. partially combusting a combustible mixture comprised of fuel and oxygen-containing gas and having a theoretical adiabatic combustion gas temperature in a catal

이 특허를 인용한 특허 (50)

  1. Joshi, Ajay; Yee, David, Catalyst module overheating detection and methods of response.
  2. Dalla Betta, Ralph, Catalyst placement in combustion cylinder for reduction on NOx and particulate soot.
  3. McCarty Jon G. ; Wong Victor L. ; Wood Bernard J., Catalytic combustion process.
  4. Benz Uwe,DEX ; Boneberg Stefan,DEX ; Heil Dietmar,DEX, Central heating device for a gas-generating system.
  5. Olstowski,Franek, Combustion apparatus and methods for making and using same.
  6. Euzen Patrick,FRX ; Tocque Eric,FRX ; Rebours Stephane,FRX ; Mabilon Gil,FRX, Combustion catalyst and combustion process using such a catalyst.
  7. Yee,David K.; Velasco,Marco A.; Nickolas,Sarento G.; Dalla Betta,Ralph A., Control strategy for flexible catalytic combustion system.
  8. Hamrin, Douglas; Lampe, Steve, Controls for multi-combustor turbine.
  9. Yee, David K.; Corr, II, Robert Anthony; Nickolas, Sarento George, Design and control strategy for catalytic combustion system with a wide operating range.
  10. Greeb Kevin, Dynamic control system and method for catalytic combustion process and gas turbine engine utilizing same.
  11. Yee,David K.; Reppen,Dag, Dynamic control system and method for multi-combustor catalytic gas turbine engine.
  12. Daly, Francis P.; Long, Richard; Ida, Junko; Taha, Rachid; Mazanec, Terry; Yang, Barry L., Electroless plating in microchannels.
  13. Prabhu, Edan, Fuel oxidation in a gas turbine system.
  14. Prabhu, Edan D., Gasifier power plant and management of wastes.
  15. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  16. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  17. Denison, Thomas Renau; Maslov, Boris A., Gradual oxidation and multiple flow paths.
  18. Maslov, Boris A., Gradual oxidation and multiple flow paths.
  19. Armstrong, Jeffrey, Gradual oxidation below flameout temperature.
  20. Maslov, Boris A., Gradual oxidation below flameout temperature.
  21. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with adiabatic temperature above flameout temperature.
  22. Maslov, Boris A., Gradual oxidation with adiabatic temperature above flameout temperature.
  23. Maslov, Boris A.; Armstrong, Jeffrey, Gradual oxidation with flue gas.
  24. Hamrin, Douglas; Armstrong, Jeffrey, Gradual oxidation with heat control.
  25. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  26. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  27. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  28. Maslov, Boris A.; Hamrin, Douglas, Gradual oxidation with heat exchange media.
  29. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with heat transfer.
  30. Armstrong, Jeffrey; Maslov, Boris A., Gradual oxidation with heat transfer.
  31. Hamrin, Douglas; Martin, Richard; Armstrong, Jeffrey, Gradual oxidation with heat transfer.
  32. Schnepel, Mark, Gradual oxidation with reciprocating engine.
  33. Schnepel, Mark; Maslov, Boris A., Gradual oxidation with reciprocating engine.
  34. Prabhu, Edan, Heating a reaction chamber.
  35. Martin, Richard; Armstrong, Jeffrey; Hamrin, Douglas, Hybrid gradual oxidation.
  36. Prabhu, Edan, Managing leaks in a gas turbine system.
  37. Smith Lance L. ; Etemad Shahrokh ; Ulkarim Hasan ; Castaldi Marco J. ; Pfefferle William C., Method and apparatus for a catalytic firebox reactor.
  38. Dalla Betta, Ralph A.; Velasco, Marco A.; Yee, David K.; Nickolas, Sarento G., Method of thermal NOx reduction in catalytic combustion systems.
  39. Hamrin, Douglas; Lampe, Steve, Multi-combustor turbine.
  40. Manohar, Shailesh Sharad; Park, Young Kyu, NOx reduction with a combination of radiation baffle and catalytic device.
  41. Prabhu, Edan, Oxidizing fuel.
  42. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  43. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  44. Beaber, Aaron R.; Veeraraghavan, Badri; Hajime, Evan Koon Lun Yuuji; Wood, Thomas E.; Barnes, Amy S., Palladium-based catalyst and support systems.
  45. Dalla Betta, Ralph A.; Nickolas, Sarento G.; Caron, Timothy J.; McCarty, Jon G.; Spencer, Mark J.; Corr, II, Robert A., Process and apparatus for control of NOx in catalytic combustion systems.
  46. Euzen Patrick,FRX ; Tocque Eric,FRX ; Rebours Stephane,FRX ; Mabilon Gil,FRX, Process for catalytic combustion of a fuel in the presence of a non-selective oxidation catalyst.
  47. Prabhu, Edan D., Processing fuel and water.
  48. Daly, Francis P.; Watson, Junko M.; Wang, Yong; Hu, Jianli; Cao, Chunshe; Long, Richard, Stable, catalyzed, high temperature combustion in microchannel, integrated combustion reactors.
  49. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Staged gradual oxidation.
  50. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas; Perry, Joe, Staged gradual oxidation.
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