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Hazardous waste reactor system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • F23G-005/00
  • F23G-005/10
  • F23G-005/12
출원번호 US-0760944 (1985-07-31)
발명자 / 주소
  • Galloway Terry R. (Berkeley CA)
출원인 / 주소
  • In-Process Technology, Inc. (Redwood City CA 02)
인용정보 피인용 횟수 : 65  인용 특허 : 1

초록

A thermal decomposition reactor accepts solid, liquid or gaseous waste products of industrial processes or the like and rapidly reduces same to substances such as carbon dioxide, water and glassified non-leachable ash without limitation by materials that may be commonly included in such waste.

대표청구항

A hazardous waste disposal system comprising a hollow high temperature cylindrical core defining a central reaction zone, a shell about said core and defining an annular space thereabout communicating with said reaction zone interior, means for heating said core for raising the temperature thereof t

이 특허에 인용된 특허 (1)

  1. Faldt Inge (Tibbarps gard S-267 00 Bjuv SEX) Bjorklund Leif (Hudiksvallsgatan 7 S-252 51 Helsingborg SEX), Method and apparatus for thermal decomposition of stable compounds.

이 특허를 인용한 특허 (65)

  1. Wetmore Kenneth H. ; Kormanyos Kenneth R. ; Cox Stephen F., Apparatus for hazardous waste vitrification.
  2. Stimson Martin L. ; Musil Joseph E., Asphalt plant having centralized media burner and low fugitive emissions.
  3. Stimson, Martin L.; Musil, Joseph E., Asphalt plant having centralized media burner and low fugitive emissions.
  4. Hamrin, Douglas; Lampe, Steve, Controls for multi-combustor turbine.
  5. Rackley John M. (Alliance OH) Vecci Stanley J. (Alliance OH), Cyclone furnace for hazardous waste incineration and ash vitrification.
  6. Edgar, Bradley L.; Martin, Richard J.; Barkdoll, Michael P., Device for thermally processing a gas stream, and method for same.
  7. Martin Richard J. ; Edgar Bradley L. ; Page Dorriah L. ; Paul Partha P., Devices for reducing emissions, and methods for same.
  8. Guy Christophe,CAX ; Benali Marzouk,CAX ; Ostiguy Eve,CAX, Free radical oxidation installation for treating liquid effluents contaminated by organic substances.
  9. Prabhu, Edan, Fuel oxidation in a gas turbine system.
  10. Prabhu, Edan D., Gasifier power plant and management of wastes.
  11. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  12. Maslov, Boris A., Gradual oxidation and autoignition temperature controls.
  13. Denison, Thomas Renau; Maslov, Boris A., Gradual oxidation and multiple flow paths.
  14. Maslov, Boris A., Gradual oxidation and multiple flow paths.
  15. Armstrong, Jeffrey, Gradual oxidation below flameout temperature.
  16. Maslov, Boris A., Gradual oxidation below flameout temperature.
  17. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with adiabatic temperature above flameout temperature.
  18. Maslov, Boris A., Gradual oxidation with adiabatic temperature above flameout temperature.
  19. Maslov, Boris A.; Armstrong, Jeffrey, Gradual oxidation with flue gas.
  20. Hamrin, Douglas; Armstrong, Jeffrey, Gradual oxidation with heat control.
  21. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  22. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  23. Lampe, Steve; Hamrin, Douglas, Gradual oxidation with heat control.
  24. Maslov, Boris A.; Hamrin, Douglas, Gradual oxidation with heat exchange media.
  25. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Gradual oxidation with heat transfer.
  26. Armstrong, Jeffrey; Maslov, Boris A., Gradual oxidation with heat transfer.
  27. Hamrin, Douglas; Martin, Richard; Armstrong, Jeffrey, Gradual oxidation with heat transfer.
  28. Schnepel, Mark, Gradual oxidation with reciprocating engine.
  29. Schnepel, Mark; Maslov, Boris A., Gradual oxidation with reciprocating engine.
  30. Galloway Terry R. (Berkeley CA), Hazardous waste reactor system.
  31. Prabhu, Edan, Heating a reaction chamber.
  32. Martin, Richard; Armstrong, Jeffrey; Hamrin, Douglas, Hybrid gradual oxidation.
  33. Snyder Thomas Stephen ; Cage Matthew Reed ; Wagner John Gregorie ; Roy Bryan Arthur, Integrated steam reforming operation for processing organic contaminated sludges and system.
  34. Prabhu, Edan, Managing leaks in a gas turbine system.
  35. Martin Richard J. ; Stilger John D. ; Holst Mark R. ; Young John D.,GBX ; Edgar Bradley L., Matrix bed for generating non-planar reaction wave fronts, and method thereof.
  36. Martin Richard J. ; Stilger John D. ; Holst Mark R. ; Young John D.,GBX ; Edgar Bradley L., Matrix bed for generating non-planar reaction wave fronts, and method thereof.
  37. Stilger John D. (San Jose CA) Martin Richard J. (San Jose CA) Holst Mark R. (Concord CA) Yee Samson C. (Fremont CA), Method and afterburner apparatus for control of highly variable flows.
  38. Stilger John D. (San Jose CA) Martin Richard J. (San Jose CA) Holst Mark R. (Concord CA) Yee Samson C. (Fremont CA), Method and afterburner apparatus for control of highly variable flows.
  39. Holst, Mark; Martin, Richard J., Method and apparatus for destruction of volatile organic compound flows of varying concentration.
  40. Stilger, John D.; Martin, Richard J.; Holst, Mark R., Method and apparatus for recuperative heating of reactants in an reaction matrix.
  41. McAdams Stephen R. ; Edgar Bradley L. ; Martin Richard J. ; Kilgo Marvin M. ; Baer Christopher B. ; Stilger John D., Method and apparatus for thermally reacting chemicals in a matrix bed.
  42. Kulkarni Prabhakar (12027 Circle Dr. E. Houston TX 77071), Method and apparatus for treatment of hazardous waste in absence of oxygen.
  43. Kulkarni Prabhakar (12027 Circle Dr. E. Houston TX 77071), Method and apparatus for treatment of hazardous waste in absence of oxygen.
  44. Holst Mark (Concord CA) Martin Richard J. (San Jose CA), Method for destruction of volatile organic compound flows of varying concentration.
  45. Galloway Terry R. ; Hensch James R., Method for detecting hydrogen in waste compounds.
  46. Wetmore Kenneth H. ; Kormanyos Kenneth R. ; Cox Stephen F., Method for hazardous waste vitrification.
  47. Hesbol Rolf,SEX ITX S-611 ; Mason J. Bradley, Method for the volume reduction and processing of nuclear waste.
  48. Richard J. Martin ; John D. Stilger ; Mark R. Holst ; John D. Young GB; Michael P. Barkdoll ; Bradley L. Edgar, Method of reducing internal combustion engine emissions, and system for same.
  49. Martin Richard J. ; Schofield John T., Method of removing sulfur from a process gas stream using a packed bed calcinator.
  50. Martin Richard J., Methods for destroying colliery methane and system for practicing same.
  51. Hamrin, Douglas; Lampe, Steve, Multi-combustor turbine.
  52. Prabhu, Edan, Oxidizing fuel.
  53. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  54. Prabhu, Edan, Oxidizing fuel in multiple operating modes.
  55. Chandran Ravi (Ellicott City MD) Mansour Momtaz N. (Highland MD), Process and apparatus for drying and heating.
  56. Workman Jason ; DellaValle Peter, Process of making a compound having a spinel structure.
  57. Prabhu, Edan D., Processing fuel and water.
  58. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas, Staged gradual oxidation.
  59. Armstrong, Jeffrey; Martin, Richard; Hamrin, Douglas; Perry, Joe, Staged gradual oxidation.
  60. Saddy Maury,BRX ; Gusmao Carlos Alberto,BRX, Static furnace for the thermal decomposition of solids at high temperatures by thermal radiation.
  61. Heywood Ann C. ; Martin Richard J. ; Stilger John D. ; King Andrew B.,GB2, Systems for the treatment of chemical wastes and methods for treating chemical wastes.
  62. Heywood Ann C. ; Holst Mark R. ; Martin Richard J. ; Schofield John T., Systems for the treatment of commingled wastes and methods for treating commingled wastes.
  63. Kroneberger Gerald F. (Novato CA) Wilcox John B. (San Jose CA), Thermal decomposition processor and system.
  64. Sheldon Richard Blair ; Iben Icko Eric Timothy ; Edelstein William Alan, Thermal desorption and destruction of dense non-aqueous phase liquid in fractured bedrock.
  65. Martin Richard J. ; Stilger John D. ; Holst Mark R., Thermal oxidizers with improved preheating means and processes for operating same.
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