$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Combustion process for reducing nitrogen oxides 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F23N-001/02
출원번호 US-0175823 (1980-08-05)
우선권정보 JP-0099487 (1979-08-06)
발명자 / 주소
  • Okiura Kunio (Kure JPX) Akiyama Iwao (Kure JPX) Terada Hiroshi (Kure JPX) Arikawa Yoshijiro (Kure JPX) Baba Akira (Kure JPX) Morita Shigeki (Kure JPX)
출원인 / 주소
  • Babcock-Hitachi, Ltd. (Tokyo JPX 03)
인용정보 피인용 횟수 : 87  인용 특허 : 6

초록

A combustion process for reducing nitrogen oxides in combustors is proposed wherein combustion takes place successively forming an incomplete combustion zone, a reducing combustion zone, and a complete combustion zone, respectively corresponding to primary burners, secondary burners and air ports or

대표청구항

A combustion process for reducing nitrogen oxides in combustors which comprises arranging at least one primary burner, at least one secondary burner and at least one air port, successively in this order in the direction of gas stream in the hollow body of a combustor provided with a space for combus

이 특허에 인용된 특허 (6)

  1. Sano ; Hiroshi, Method of combustion for depressing nitrogen oxide discharge.
  2. Jones ; Dale A. ; Mansour ; Mansour N., Method of reducing nitrogen oxide emissions in flue gas.
  3. Lautenschlger Friedrich W. (Dsseldorf DEX), Process and apparatus for operating a firebox with solid gasifiable fuel having poor kindling properties and low volatil.
  4. Craig Glenn D. (Menomonee Falls WI) Feuling David T. (Milwaukee WI) LaHaye Paul G. (Cape Elizabeth ME), Reduction of gaseous pollutants in combustion flue gas.
  5. Benson Elliot Warren (Verona NJ), Serially fired steam generator.
  6. Dauvergne Hector A. (P.O. Box 884 San Leandro CA 94577), Three-stage liquid fuel burner.

이 특허를 인용한 특허 (87)

  1. Rennert Klaus-Dieter (Gummersbach DEX) Schreier Wolfgang (Gummersbach DEX), Apparatus for burning fuels while reducing the nitrogen oxide level.
  2. Kenji Yamamoto JP; Hironobu Kobayashi JP; Hirofumi Okazaki JP; Toshikazu Tsumura JP; Kenji Kiyama JP, Boiler.
  3. Schwartz, Jeffrey; Avaltroni, Michael J.; Danahy, Michael P.; Silverman, Brett M., Carrier applied coating layers.
  4. Schwartz,Jeffrey; Avaltroni,Michael J.; Danahy,Michael P.; Silverman,Brett M., Carrier applied coating layers.
  5. Liu, Jiankai; Huang, Yuhong; Nishimura, Ichiro, Coated implants and methods of coating.
  6. Liu,Jiankai; Huang,Yuhong; Nishimura,Ichiro, Coated implants and methods of coating.
  7. Philippe Louis ; Duchateau Eric ; Jouvaud Dominique,FRX ; Plessier Robert,FRX ; Pivard Claude,FRX ; Lepoutre Etienne,FRX, Combustion assembly for a furnace and method of use.
  8. Miyagaki Hisanori (Hitachiota JPX) Higashi Toshihiko (Hitachi JPX) Yokogawa Atsushi (Hitachi JPX) Shimada Yoshihiro (Izumi JPX) Kurihara Nobuo (Hitachiota JPX) Nishikawa Mitsuyo (Hitachi JPX) Sato Yo, Combustion control method.
  9. Hagstrom, Ulf; Norelius, Eric, Combustion optimization.
  10. Hamrin, Douglas; Lampe, Steve, Controls for multi-combustor turbine.
  11. Berckmans, III, Bruce; Towse, Ross W.; Mayfield, Robert L., Deposition of discrete nanoparticles on an implant surface.
  12. Berckmans, III, Bruce; Towse, Ross W.; Mayfield, Robert L., Deposition of discrete nanoparticles on an implant surface.
  13. Berckmans, III, Bruce; Towse, Ross W.; Mayfield, Robert L., Deposition of discrete nanoparticles on an implant surface.
  14. Schwartz, Jeffrey; Gawalt, Ellen S.; Avaltroni, Michael J., Devices with multiple surface functionality.
  15. Schwartz,Jeffrey; Avaltroni,Michael J.; Carolus,Michael D.; Hanson,Eric L.; Schwarzbauer,Jean E.; Midwood,Kim S.; Danahy,Michael P., Enhanced bonding layers on native oxide surfaces.
  16. Schwartz, Jeffrey; Avaltroni, Michael J.; Midwood, Kim S.; Schwarzbauer, Jean E.; Gawalt, Ellen, Enhanced bonding layers on titanium materials.
  17. Schwartz, Jeffrey; Avaltroni, Michael J.; Midwood, Kim S.; Schwarzbauer, Jean E.; Gawalt, Ellen, Enhanced bonding layers on titanium materials.
  18. Schwartz, Jeffrey; Avaltroni, Michael J.; Midwood, Kim S.; Schwarzbauer, Jean E.; Gawalt, Ellen, Enhanced bonding layers on titanium materials.
  19. Schwartz, Jeffrey; Danahy, Michael P.; Avaltroni, Michael J.; Midwood, Kim S.; Schwarzbauer, Jean E.; Carolus, Michael D.; Gawalt, Ellen S., Enhanced bonding layers on titanium materials.
  20. Schwartz, Jeffrey; Gawalt, Ellen; Avaltroni, Michael, Enhanced bonding of phosphoric and phosphoric acids to oxidized substrates.
  21. Bricmont, Francis H., Flow distribution header system.
  22. Abbasi Hamid A. (Darien IL), Fuel combustion.
  23. Prabhu, Edan, Fuel oxidation in a gas turbine system.
  24. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  25. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  26. Denison, Thomas Renau; Maslov, Boris A., Gradual oxidation and multiple flow paths.
  27. Maslov, Boris A., Gradual oxidation and multiple flow paths.
  28. Armstrong, Jeffrey, Gradual oxidation below flameout temperature.
  29. Maslov, Boris A., Gradual oxidation below flameout temperature.
  30. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with adiabatic temperature above flameout temperature.
  31. Maslov, Boris A., Gradual oxidation with adiabatic temperature above flameout temperature.
  32. Maslov, Boris A.; Armstrong, Jeffrey, Gradual oxidation with flue gas.
  33. Watts, Jim, Gradual oxidation with gradual oxidizer warmer.
  34. Hamrin, Douglas; Armstrong, Jeffrey, Gradual oxidation with heat control.
  35. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  36. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  37. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  38. Maslov, Boris A.; Hamrin, Douglas, Gradual oxidation with heat exchange media.
  39. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with heat transfer.
  40. Armstrong, Jeffrey; Maslov, Boris A., Gradual oxidation with heat transfer.
  41. Hamrin, Douglas; Martin, Richard; Armstrong, Jeffrey, Gradual oxidation with heat transfer.
  42. Prabhu, Edan, Heating a reaction chamber.
  43. Marin, Ovidiu; Bugeat, Benjamin; Streicher, Eric; Di Zanno, Pietro, High velocity injection of enriched oxygen gas having low amount of oxygen enrichment.
  44. Marin,Ovidiu; Bugeat,Benjamin; Streicher,Eric; Di Zanno,Pietro, High velocity injection of enriched oxygen gas having low amount of oxygen enrichment.
  45. Roy Payne ; Quang Nguyen ; David Moyeda, High velocity reburn fuel injector.
  46. Martin, Richard; Armstrong, Jeffrey; Hamrin, Douglas, Hybrid gradual oxidation.
  47. Charlton, Jacqueline K.; Mayfield, Robert L.; Towse, Ross W., Implant surface with increased hydrophilicity.
  48. Charlton, Jacqueline K.; Mayfield, Robert L.; Towse, Ross W., Implant surface with increased hydrophilicity.
  49. Marks, Jacqueline K.; Mayfield, Robert L.; Towse, Ross W., Implant surface with increased hydrophilicity.
  50. Joshi Mahendra L. ; Mohr Patrick J., In-line method of burner firing and NO.sub.x emission control for glass melting.
  51. Yamada, Toshihiko; Uchida, Terutoshi; Sato, Masami, Method and apparatus of controlling oxygen supply for boiler.
  52. Ashworth Robert A. ; Morrison Donald K. ; Payne Roy, Method and system for reducing nitrogen oxide and sulfur oxide emissions from carbonaceous fuel combustion flue gases.
  53. Ashworth Robert A. ; Carson W. Richard ; Melick Todd A. ; Sommer Todd M., Method and system for the disposal of coal preparation plant waste coal through slurry co-firing in cyclone-fired boiler.
  54. Ashworth Robert A. ; Carson W. Richard ; Melick Todd A. ; Sommer Todd M., Method and system for the disposal of coal preparation plant waste coal through slurry co-firing in cyclone-fired boilers to effect a reduction in nitrogen oxide emissions.
  55. Wakasa, Satoshi; Takubo, Noboru; Isshiki, Yukihiro; Masuda, Kouichi; Ishizaki, Nobuyuki, Method for controlling NOx removal system in boiler.
  56. Snyder William Joseph (Ossining NY), Method for operating a furnace.
  57. Yokotani, Masamichi; Ishikawa, Yutaka; Tanigaki, Atsushi; Hasegawa, Daisuke; Morohashi, Shinji, Method for reducing nitrogen oxides in combustion gas from combustion furnace.
  58. Sato Yoshio (Hitachi JPX) Kurihara Nobuo (Hitachiota JPX) Matsumoto Hiroshi (Ibaraki JPX) Saito Tadayoshi (Hitachiota JPX) Nishikawa Mitsuyo (Hitachi JPX) Higashi Toshihiko (Hitachi JPX), Method of controlling combustion.
  59. Shelor F. Mack ; Bianco Robert, Method of operating a combined cycle power plant.
  60. Shelor, Frederick McIvor; Fisher, Matthew David; Ferrari, Joseph Robert; Boij, Johan Erik, Method of operating a combined cycle power plant.
  61. Kaczenski,Edward; Bool, III,Lawrence E.; Kobayashi,Hisashi, Method of operating furnace to reduce emissions.
  62. Lissianski Vitali V. ; Zamansky Vladimir M. ; Lyon Richard K. ; Payne Roy, Method of reducing NOx in a combustion flue gas.
  63. Martin Helmut (Gummersbach DEX) Schreier Wolfgang (Gummersbach DEX), Method of reducing the NOx content in combustion gases.
  64. Zamansky,Vladimir M.; Lissianski,Vitali Victor; Eiteneer,Boris Nickolaevich, Methods and systems for operating combustion systems.
  65. Hamrin, Douglas; Lampe, Steve, Multi-combustor turbine.
  66. Joshi, Mahendra Ladharam; Habel, Michael E.; Lievre, Kevin Alan, Oxidant injection method.
  67. Prabhu, Edan, Oxidizing fuel.
  68. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  69. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  70. Khinkis Mark J. (Morton Grove IL), Oxygen enriched continuous combustion in a regenerative furance.
  71. Kraus ; deceased Willibald (late of Zierenberg DEX by Edith Kraus ; Reinhild Kraus ; Martin Kraus ; heirs), Process and equipment for reducing the emission of pollutants in flue gases from furnace installations.
  72. Hino Hirokazu,JPX ; Ichinose Toshimitsu,JPX ; Tokuda Kimishiro,JPX ; Arakawa Yoshihisa,JPX ; Nagai Masaaki,JPX ; Baba Yoshitaka,JPX, Recovery boiler.
  73. Schwartz Jeffrey, Self-assembled organic monolayers.
  74. Leroux, Bertrand; Tsiava, Rémi; Recourt, Patrick Jean-Marie, Staged combustion method for producing asymmetric flames.
  75. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Staged gradual oxidation.
  76. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas; Perry, Joe, Staged gradual oxidation.
  77. Mayfield, Robert L.; Towse, Ross W., Surface treatment for an implant surface.
  78. Payne Roy ; Folsom Blair A. ; Sommer Todd M., System and method for removing ash deposits in a combustion device.
  79. Voorheis Temple S. (Atherton CA), System for the reduction of NOx emissions.
  80. Barna Joseph J., Tangentially-fired furnace having reduced NOx emissions.
  81. Mayfield, Robert L.; Towse, Ross W., Titanium nano-scale etching on an implant surface.
  82. Mayfield, Robert L.; Towse, Ross W., Titanium nano-scale etching on an implant surface.
  83. Mayfield, Robert L.; Towse, Ross W., Titanium nano-scale etching on an implant surface.
  84. Mayfield, Robert L; Towse, Ross W, Titanium nano-scale etching on an implant surface.
  85. Mayfield, Robert L; Towse, Ross W, Titanium nano-scale etching on an implant surface.
  86. Robertson, Thomas F., Ultra low NOx combustion for steam generator.
  87. Lipinski, William T.; Centore, Peter V.; Gorring, George M.; Jennings, James J.; Waltz, Robert; Laursen, Thomas A.; Latham, Chris E.; Plessinger, Duane; Morrison, Don; O'Connor, David, Zero cooling air flow overfire air injector and related method.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로