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Catalyst comprising a metal substrate 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01J-027/14
  • B01J-022/16
  • B01J-035/00
출원번호 US-0117555 (1980-02-01)
발명자 / 주소
  • Hunter James B. (Newton Square PA) McGuire George (West Chester PA) D\Alessandro A. F. (Havertown PA) Lawlor Larry L. (Glenmoore PA)
출원인 / 주소
  • Johnson Matthey Inc. (Malvern PA 02)
인용정보 피인용 횟수 : 33  인용 특허 : 3

초록

A catalyst comprising a metal or alloy substrate, an oxidation resistant coating applied to the substrate, the coating comprising aluminum metal powder in a ceramic binder, a high surface area catalytic washcoat over the oxidation resistant coating and a catalytically active material, e.g. a platinu

대표청구항

A supported catalyst suitable for use at a temperature above 1200°F. consisting essentially of a metal or alloy substrate which itself is not heat or oxidation resistant at a temperature above 1200°F.; a heat-cured oxidation resistant coating applied to said substrate, said coating being applied as

이 특허에 인용된 특허 (3)

  1. Cairns James Anthony (Wantage EN) Pugh Stanley Frederick (Abingdon EN), Catalyst.
  2. Santala Teuvo J. (Attleboro MA) Jost Ernest M. (Plainville MA), Catalytic converter.
  3. Noakes Michael Lesney (Reading EN) Caesar Wilfred George (Reading EN) Lloyd Henry (Wantage EN), Fabricating bodies.

이 특허를 인용한 특허 (33)

  1. McDaniel Max P. (Bartlesville OK) Pitzer Emory W. (Bartlesville OK), Acid agglomeration of refractory gel in polar organic diluent.
  2. McDaniel Max P. (Bartlesville OK) Johnson Marvin M. (Bartlesville OK) Hawley Gil R. (Bartlesville OK) Westerman John (Bartlesville OK) Smith Paul D. (Bartlesville OK), Acrylamide polymer used to reduce fines in aluminum phosphate gel.
  3. Roberts John S. (Bartlesville OK), Catalyst composition.
  4. West, David James; Bowe, Michael Joseph; Jones, Stuart Leigh; Lee-Tuffnell, Clive Derek; Peat, Robert, Catalyst structure for a rapid reaction.
  5. Magnier Claude (Paris FRX), Catalyst support and process for preparing same.
  6. LeViness, Stephen Claude; Daly, Francis; Richard, Laura Amanda; Rugmini, Sreekala, Fischer-Tropsch process.
  7. LeViness, Stephen Claude; Daly, Francis; Richard, Laura; Rugmini, Sreekala, Fischer-Tropsch process.
  8. 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.
  9. 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.
  10. 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.
  11. 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.
  12. Tonkovich, Anna Lee; Arora, Ravi; Brophy, John; Daly, Francis P.; Deshmukh, Soumitra; Fanelli, Maddalena; Jarosch, Kai Tod Paul; LaPlante, Timothy J.; Long, Richard Q.; Mazanec, Terry; Ryan, Daniel Francis; Silva, Laura J.; Simmons, Wayne W.; Stangeland, Bruce; Wang, Yong; Yuschak, Thomas; Perry, Steven T.; Marco, Jeffrey Dale; Marchiando, Michael Alan; Litt, Robert Dwayne, Process and apparatus employing microchannel process technology.
  13. Tonkovich, Anna Lee; Arora, Ravi; Brophy, John; Daly, Francis P.; Deshmukh, Soumitra; Fanelli, Maddalena; Jarosch, Kai Tod Paul; LaPlante, Timothy J.; Long, Richard Q.; Mazanec, Terry; Ryan, Daniel Francis; Silva, Laura J.; Simmons, Wayne W.; Stangeland, Bruce; Wang, Yong; Yuschak, Thomas; Perry, Steven T.; Marco, Jeffrey Dale; Marchiando, Michael Alan; Litt, Robert Lewis, Process and apparatus employing microchannel process technology.
  14. Tonkovich, Anna Lee; Arora, Ravi; Brophy, John; Daly, Francis P.; Deshmukh, Soumitra; Fanelli, Maddalena; Jarosch, Kai Tod Paul; LaPlante, Timothy J.; Long, Richard Q.; Mazanec, Terry; Ryan, Daniel Francis; Silva, Laura J.; Simmons, Wayne W.; Strangeland, Bruce; Wang, Yong; Yuschak, Thomas; Perry, Steven T.; Marco, Jeffrey Dale; Marchiando, Michael Alan; Litt, Robert Lewis, Process and apparatus employing microchannel process technology.
  15. Perry, Steven T.; Arora, Ravi; Twigg, Martyn; Yang, Bin; Yuschak, Thomas; Jarosch, Kai Tod Paul; Drescher, Eric Hans; Letellier, Franck; Gabrielsson, Anders, Process and apparatus for conducting simultaneous endothermic and exothermic reactions.
  16. Litt, Robert Dwayne; Simmons, Wayne W., Process and apparatus for converting natural gas to higher molecular weight hydrocarbons using microchannel process technology.
  17. Tonkovich, Anna Lee; Jarosch, Kai Tod Paul; Mazanec, Terry; Daly, Francis P.; Taha, Rachid; Aceves de Alba, Enrique, Process for conducting an equilibrium limited chemical reaction using microchannel technology.
  18. Simmons, Wayne W.; Litt, Robert Dwayne; Mazanec, Terry; Tonkovich, Anna Lee, Process for converting a carbonaceous material to methane, methanol and/or dimethyl ether using microchannel process technology.
  19. Abdallah, Radwan; Mäurer, Torsten; Rosendahl, Tobias; Rosowski, Frank; Theis, Gerhard; Mazanec, Terry; Deshmukh, Soumitra; Silva, Laura J., Process for making ethylene oxide.
  20. Mazanec, Terry; Desmukh, Soumitra; Silva, Laura J.; Maurer, Torsten; Abdallah, Radwan; Rosowski, Frank, Process for making ethylene oxide using microchannel process technology.
  21. Tonkovich, Anna Lee; Jarosch, Kai Tod Paul; Yang, Bin; Daly, Francis P.; Hickey, Thomas P.; Marco, Jeffrey; LaPlante, Timothy J.; Long, Richard Q., Process for making styrene using mircochannel process technology.
  22. Tonkovich, Anna Lee; Arora, Ravi; Kilanowski, David; Daymo, Eric, Process for treating and/or forming a non-Newtonian fluid using microchannel process technology.
  23. Tonkovich, Anna Lee; Arora, Ravi; Kilanowski, David; Daymo, Eric, Process for treating and/or forming a non-Newtonian fluid using microchannel process technology.
  24. Tonkovich, Anna Lee; Arora, Ravi; Kilanowski, David; Daymo, Eric, Process for treating and/or forming a non-newtonian fluid using microchannel process technology.
  25. Simmons, Wayne W.; Litt, Robert Dwayne; Tonkovich, Anna Lee; Silva, Laura J.; Ryan, Daniel Francis; Stangeland, Bruce; Brophy, John; McDaniel, Jeffrey S., Process for upgrading a carbonaceous material using microchannel process technology.
  26. Tonkovich, Anna Lee; Qiu, Dongming; Long, Richard Q.; Yang, Barry L.; Yuschak, Thomas; Perry, Steven T., Process of conducting reactions or separation in a microchannel with internal fin support for catalyst or sorption medium.
  27. Ishida Nobuyoshi (Kure JPX) Nagashima Toshiharu (Kure JPX) Miyake Katsutaro (Kure JPX), Process of continuously producing plate-shaped catalyst and system therefor.
  28. Dolan Calvin M. (King of Prussia PA), Reducing precious metal use in catalyst substrates.
  29. Ogut, Ali; Chen, Cheng, Self-regenerating particulate trap systems for emissions and methods thereof.
  30. Ogut, Ali; Chen, Cheng, Self-regenerating particulate trap systems for emissions and methods thereof.
  31. Ogut, Ali; Chen, Cheng, Self-regenerating particulate trap systems for emissions and methods thereof.
  32. Ogut, Ali; Cheng, Chen, Self-regenerating particulate trap systems for emissions and methods thereof.
  33. Tonkovich, Anna Lee; Jarosch, Kai Tod Paul; Marco, Jeffrey D.; Yang, Bin; Fitzgerald, Sean Patrick; Perry, Steven T.; Yuschak, Thomas; Daly, Francis P.; Chen, Haibiao, Support for use in microchannel processing.
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