$\require{mediawiki-texvc}$

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.

Protecting catalytic activity of a SAPO molecular sieve 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C07C-001/20
  • B01J-027/182
출원번호 US-0391770 (1999-09-08)
발명자 / 주소
  • Janssen Marcel J. G.,BEX
  • Van Oorschot Cornelius W. M.,BEX
  • Fung Shun C.
  • Martens Luc R. M.,BEX
  • Mortier Wilfried J.,BEX
  • Searle Ronald G.
  • Mertens Machteld M.,BEX
  • Vaughn Stephen N.
출원인 / 주소
  • ExxonMobil Chemical Patents Inc.
대리인 / 주소
    Keller
인용정보 피인용 횟수 : 34  인용 특허 : 25

초록

This invention is directed to a method of making an olefin product from an oxygenate feedstock and a method of protecting catalytic activity of a silicoaluminophosphate molecular sieve. The methods comprise providing a silicoaluminophosphate molecular sieve having catalytic sites within the molecula

대표청구항

[ What is claimed is:] [1.]1. A method of protecting catalytic activity of a silicoaluminophosphate molecular sieve, comprising providing a silicoaluminophosphate molecular sieve with a pore size of less than 5 angstroms and at a temperature less than 150.degree. C. having catalytic sites protected

이 특허에 인용된 특허 (25)

  1. Hidaka Toshio,JPX ; Yokose Emiko,JPX, Catalysts for methanol conversion reactions.
  2. Lewis Jeffrey M. O. (Charleston WV) Henstock William H. (Charleston WV), Chemical conversion process.
  3. Edwards Grant C. (Silver Spring MD) Gilson Jean-Pierre (Columbia MD) McDaniel Carl V. (Laurel MD), Cracking catalyst.
  4. Lok Brent M. (New City NY) Messina Celeste A. (Ossining NY) Patton Robert L. (Katonah NY) Gajek Richard T. (New Fairfield CT) Cannan Thomas R. (Valley Cottage NY) Flanigen Edith M. (White Plains NY), Crystalline silicoaluminophosphates.
  5. Goeke George L. (Belle Mead NJ) Wagner Burkhard E. (Highland Park NJ) Karol Frederick J. (Belle Mead NJ), Impregnated polymerization catalyst, process for preparing, and use for ethylene copolymerization.
  6. Barger Paul T. (Arlington Heights IL), Methanol conversion process using SAPO catalysts.
  7. Chu Chin-Chiun (North Brunswick NJ), Method for maintaining para-selectivity of modified zeolite catalyst.
  8. Saxton Robert J. (West Chester PA) Zajacek John G. (Devon PA), Method of making essentially silicic zeolite beta.
  9. Chen Nai Y. (Titusville NJ) Miale Joseph N. (Lawrenceville NJ) Reagan William J. (Yardley PA), Method of producing a steam stable aluminosilicate zeolite catalyst.
  10. Moser Mark D. (Elk Grove Village IL) Lawson R. Joe (Palatine IL), Method of stabilizing a reforming catalyst.
  11. Sun Hsiang-ning, Modification of molecular sieve catalyst for reduced methane production during conversion of oxygenates to olefins.
  12. Kvisle Steinar (Porsgrunn NOX) Wendelbo Rune (Oslo NOX) ren Hanne (Billingstad NOX), Procedure for synthesis of crystalline microporous silico-alumino-phosphates.
  13. Barger Paul T. (Arlington Heights IL) Wilson Stephen T. (Shrub Oak NY) Holmgren Jennifer S. (Bloomingdale IL), Process for converting methanol to olefins using an improved metal aluminophosphate catalyst.
  14. Lattner James Richardson ; Sun Hsiang-ning ; Vaughn Stephen Neil ; Kuechler Keith H. ; Skouby David C., Process for converting oxygenates to olefins using molecular sieve catalysts comprising desirable carbonaceous deposits.
  15. Serrand Willibald,DEX ; Jacobson Mitchell ; Ladwig Paul K. ; Pagel John F. ; Parrish Michael R. ; Seimandi Noel,BEX ; Weisenberger Hans A.,BEX, Process for obtaining significant olefin yields from residua feedstocks.
  16. Mulvaney ; III Robert C. ; Marker Terry L., Process for producing light olefins.
  17. Vora Bipin V. ; Marker Terry L. ; Nilsen Henning R.,NOX, Process for producing light olefins from crude methanol.
  18. Kaiser Steven W. (South Charleston WV), Production of light olefins.
  19. Kaiser Steven W. (South Charleston WV), Production of light olefins.
  20. Kaiser Steven W. (South Charleston WV), Production of light olefins.
  21. Kaiser Steven W. (South Charleston WV), Production of light olefins from aliphatic hetero compounds.
  22. Barger Paul T. (Arlington Heights IL), Sapo catalysts and use thereof in methanol conversion processes.
  23. Wu An-hsiang ; Melton Ralph ; Drake Charles A., Silicoaluminophosphate material, a method of making such improved material and the use thereof in the conversion of oxygenated hydrocarbons to olefins.
  24. Wu An-hsiang ; Melton Ralph J. ; Drake Charles A., Silicoaluminophosphate material, a method of making such improved material and the use thereof in the conversion of oxygenated hydrocarbons to olefins.
  25. Pieters Wim J. M. (Morristown NJ) Okumura Yoshiharu (Tokyo JPX), Two stage process for improving the catalyst life of zeolites in the synthesis of lower olefins from alcohols and their.

이 특허를 인용한 특허 (34)

  1. Xu, Teng; White, Jeffrey L., Catalyst pretreatment in an oxgenate to olefins reaction system.
  2. Xu, Teng; White, Jeffrey L., Catalyst pretreatment in an oxygenate to olefins reaction system.
  3. Bull, Ivor; Xue, Wen Mei; Burk, Patrick; Boorse, R. Samuel; Jaglowski, William M.; Koermer, Gerald S.; Moini, Ahmad; Patchett, Joseph A.; Dettling, Joseph C.; Caudle, Matthew T., Copper CHA zeolite catalysts.
  4. Bull, Ivor; Xue, Wen-Mei; Burk, Patrick; Boorse, R. Samuel; Jaglowski, William M.; Koermer, Gerald Stephen; Moini, Ahmad; Patchett, Joseph A.; Dettling, Joseph C.; Caudle, Matthew Tyler, Copper CHA zeolite catalysts.
  5. Bull, Ivor; Xue, Wen-Mei; Burk, Patrick; Boorse, R. Samuel; Jaglowski, William M.; Koermer, Gerald Stephen; Moini, Ahmad; Patchett, Joseph A.; Dettling, Joseph C.; Caudle, Matthew Tyler, Copper CHA zeolite catalysts.
  6. Bull, Ivor; Xue, Wen-Mei; Burk, Patrick; Boorse, R. Samuel; Jaglowski, William M.; Koermer, Gerald Stephen; Moini, Ahmad; Patchett, Joseph A.; Dettling, Joseph C.; Caudle, Matthew Tyler, Copper CHA zeolite catalysts.
  7. Bull, Ivor; Xue, Wen-Mei; Burk, Patrick; Boorse, R. Samuel; Jaglowski, William M.; Koermer, Gerald Stephen; Moini, Ahmad; Patchett, Joseph A.; Dettling, Joseph C.; Caudle, Matthew Tyler, Copper CHA zeolite catalysts.
  8. Bull, Ivor; Xue, Wen-Mei; Burk, Patrick; Boorse, R. Samuel; Jaglowski, William M.; Koermer, Gerald Stephen; Moini, Ahmad; Patchett, Joseph A.; Dettling, Joseph C.; Caudle, Matthew Tyler, Copper CHA zeolite catalysts.
  9. Loezos,Peter N.; Fung,Shun Chong; Vaughn,Stephen Neil; Clem,Kenneth Ray; Beech,James H.; Coute,Nicolas P.; Janssen,Marcel Johannes; Martens,Luc Roger Marc; Strohmaier,Karl G., Maintaining molecular sieve catalytic activity under water vapor conditions.
  10. Loezos,Peter N.; Fung,Shun Chong; Vaughn,Stephen Neil; Clem,Kenneth Ray; Beech,James H.; Coute,Nicolas P.; Janssen,Marcel Johannes; Martens,Luc Roger Marc; Strohmaier,Karl G., Maintaining molecular sieve catalytic activity under water vapor conditions.
  11. Fung,Shun C.; Hall,Richard B.; Kochkar,Hafedh; Strohmaier,Karl G.; Coute,Nicolas P.; Clem,Kenneth R., Method for stabilizing catalyst activity during MTO unit operation.
  12. Fung,Shun C.; Hall,Richard B.; Kochkar,Hafedh; Strohmaier,Karl G.; Coute,Nicolas P.; Clem,Kenneth R., Method for using stabilizing catalyst activity during MTO unit operation.
  13. Fung, Shun Chong; Vaughn, Stephen Neil; Janssen, Marcel Johannes; Martens, Luc Roger Marc; Clem, Kenneth Ray, Method of protecting SAPO molecular sieve from loss of catalytic activity.
  14. Beech,James H.; Walter,Richard E.; Fung,Shun Chong; Loezos,Peter N.; Janssen,Marcel Johannes; Vaughn,Stephen Neil, Method of shutting down a reaction system.
  15. Beech,James H.; Walter,Richard E.; Fung,Shun Chong; Loezos,Peter N.; Janssen,Marcel Johannes; Martens,Luc Roger Marc; Clem,Kenneth Ray; Vaughn,Stephen Neil, Method of starting up a reaction system.
  16. Beech, Jr.,James H.; Stephen,Neil Vaughn; Xu,Teng; Martens,Luc R. M.; Walter,Richard E., Method of transferring catalyst in a reaction system.
  17. Bull, Ivor; Koermer, Gerald S.; Moini, Ahmad; Unverricht, Signe, Methods utilizing non-zeolitic metal-containing molecular sieves having the CHA crystal structure.
  18. Chang,Yun feng; Vaughn,Stephen N.; Martens,Luc R. M.; Clem,Kenneth R., Molecular sieve catalyst composition, its making and use in conversion process.
  19. Xu,Teng; Vaughn,Stephen N.; Hall,Richard B.; Levin,Doron; Vartuli,James Clark, Molecular sieve compositions, catalyst thereof, their making and use in conversion processes.
  20. Xu,Teng; Coute,Nicolas P.; Clem,Kenneth R.; Levin,Doron; Vartuli,James C., Pretreating a catalyst containing molecular sieve and active metal oxide.
  21. Beutel, Tilman W.; Bull, Ivor; Moini, Ahmad; Breen, Michael; Dieterle, Martin; Alerasool, Saeed; Slawski, Barbara, Process for preparation of copper containing molecular sieves with the CHA structure, catalysts, systems and methods.
  22. Beutel, Tilman W.; Bull, Ivor; Moini, Ahmad; Breen, Michael; Dieterle, Martin; Alerasool, Saeed; Liu, Xinsheng; Lin, Wenyong; Slawski, Barbara; Mueller, Ulrich, Process of direct copper exchange into Na+-form of chabazite molecular sieve, and catalysts, systems and methods.
  23. Bull, Ivor; Xue, Wen-Mei; Burk, Patrick; Boorse, R. Samuel; Jaglowski, William M.; Koermer, Gerald S.; Moini, Ahmad; Patchett, Joseph A.; Dettling, Joseph C.; Caudle, Matthew T., Processes for reducing nitrogen oxides using copper CHA zeolite catalysts.
  24. Janssen, Marcel J. G.; Van Oorschot, Cornelius W. M.; Fung, Shun C.; Martens, Luc R. M.; Mortier, Wilfried J.; Searle, Ronald G.; Mertens, Machteld M.; Vaughn, Stephen N., Protecting catalytic activity of a SAPO molecular sieve.
  25. Janssen,Marcel Johannes; Martens,Luc Roger Marc, Protecting catalytic sites of metalloaluminophosphate molecular sieves.
  26. Janssen,Marcel Johannes; Martens,Luc Roger Marc, Protecting catalytic sites of metalloaluminophosphate molecular sieves.
  27. Martens, Luc R. M.; Janssen, Marcel J.; Coute, Nicolas; Lattner, James R., Rejuvenating deactivated molecular sieve.
  28. Mies, Martijn J. M.; Harte, Mark H.; Steenwinkel, Edgar Evert; van Broekhoven, Emanuel Hermanus, SAPO molecular sieve catalysts and their preparation and uses.
  29. Boorse, R. Samuel; Dettling, Joseph C., SCR on low thermal mass filter substrates.
  30. Boorse, Samuel; Dettling, Joseph C., SCR on low thermal mass filter substrates.
  31. Xu, Teng; Vaughn, Stephen N.; Clem, Kenneth R.; Beech, Jr., James H.; Loezos, Peter Nicholas; Hall, Richard B.; Goellner, Jesse Frederick, Stabilizing catalyst activity during catalyst regeneration.
  32. Xu, Teng; Vaughn, Stephen Neil; Clem, Kenneth R.; Beech, Jr., James H.; Loezos, Pete N., Stabilizing catalyst activity during catalyst regeneration.
  33. Bull, Ivor; Koermer, Gerald Stephen; Moini, Ahmad; Unverricht, Signe, Systems utilizing non-zeolitic metal-containing molecular sieves having the CHA crystal structure.
  34. Andersen, Paul Joseph; Bailie, Jillian Elaine; Casci, John Leonello; Chen, Hai-Ying; Fedeyko, Joseph Michael; Foo, Rodney Kok Shin; Rajaram, Raj Rao, Transition metal/zeolite SCR catalysts.
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