$\require{mediawiki-texvc}$

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.

Methanol conversion process using SAPO catalysts 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C07C-001/20
출원번호 US-0662076 (1991-02-28)
발명자 / 주소
  • Barger Paul T. (Arlington Heights IL)
출원인 / 주소
  • UOP (Des Plaines IL 02)
인용정보 피인용 횟수 : 143  인용 특허 : 0

초록

Hydrothermal treatment of silicoaluminophosphate molecular sieves at temperatures in excess of about 700°C. for periods sufficient to destroy a large proportion of their acid sites while retaining at least 80 percent of their crystallinity is found to result in a catalyst for converting methanol to

대표청구항

Process for converting methanol to light olefins which comprises contacting methanol at a temperature in the range of 200°C. to 700°C. and at a pressure of 0.1 to 100 atmospheres with a crystalline silicoaluminophosphate molecular sieve which has been hydrothermally treated at a temperature of at le

이 특허를 인용한 특허 (143)

  1. Cao,Guang; Strohmaier,Karl G.; Li,Hailian; Guram,Anil S.; Saxton,Robert J.; Muraoka,Mark T.; Yoder,Jeffrey C.; Yaccato,Karin, AEI-Type zeolite, its synthesis and its use in the conversion of oxygenates to olefins.
  2. Rende, Dean E.; Gorawara, Jayant K.; Majumder, Debarshi, Acids removal and methane conversion process using a supersonic flow reactor.
  3. Sun Hsiang-ning, Alkaline earth metal containing small pore non-zeolitic molecular sieve catalysts.
  4. Stewart, Douglas G.; Zimmermann, Joseph E.; Furfaro, Angelo P.; Vora, Bipin V., Apparatus and process for light olefin recovery.
  5. Stewart,Douglas G.; Zimmermann,Joseph E.; Furfaro,Angelo P.; Vora,Bipin V., Apparatus and process for light olefin recovery.
  6. Xu,Teng, Catalyst compositions and preparation thereof.
  7. Xu, Teng, Catalyst compositions and their synthesis.
  8. Xu, Teng; White, Jeffrey L., Catalyst pretreatment in an oxgenate to olefins reaction system.
  9. Xu, Teng; White, Jeffrey L., Catalyst pretreatment in an oxygenate to olefins reaction system.
  10. Sun Hsiang-ning, Catalytic conversion of oxygenates to olefins.
  11. Xu, Teng; Chen, Tan-Jen; Sangar, Neeraj; Ou, John Di Yi, Catalytic conversion of oxygenates to olefins.
  12. Abrevaya, Hayim; Abdo, Suheil F.; Patton, R. Lyle, Catalytic naphtha cracking catalyst and process.
  13. Abrevaya, Hayim; Abdo, Suheil F.; Patton, R. Lyle, Catalytic naphtha cracking catalyst and process.
  14. Abrevaya,Hayim; Abdo,Suheil F.; Patton,R. Lyle, Catalytic naphtha cracking catalyst and process.
  15. Abrevaya,Hayim; Abdo,Suheil F.; Patton,R. Lyle, Catalytic naphtha cracking catalyst and process.
  16. Pop, Grigore; Ganea, Rodica; Ivanescu, Doina; Boeru, Rodica; Ignatescu, Gheorghe; Birjega, Ruxandra, Catalytic process for the preparation of light olefins from methanol in fluidized bed reactor.
  17. Fung, Shun C.; Kuechler, Keith H.; Smith, Jeffrey S.; Coute, Nicolas P.; Vaughn, Stephen N.; Cao, Chunshe, Catalytic production of olefins at high methanol partial pressures.
  18. Fung, Shun C.; Kuechler, Keith H.; Smith, Jeffrey S.; Coute, Nicolas P.; Vaughn, Stephen N.; Cao, Chunshe, Catalytic production of olefins at high methanol partial pressures.
  19. Lomas, David A.; Miller, Lawrence W., Controllable space velocity reactor.
  20. Lomas,David A.; Miller,Lawrence W., Controllable space velocity reactor and process.
  21. Kalnes,Tom N.; Wei,Daniel H.; Glover,Bryan K., Conversion of an alcoholic oxygenate to propylene using moving bed technology and an etherification step.
  22. Kalnes, Tom N.; Wei, Daniel H.; Glover, Bryan K., Conversion of dimethylether to propylene using moving bed technology.
  23. Kalnes,Tom N.; Wei,Daniel H.; Glover,Bryan K., Conversion of oxygenate to propylene using moving bed technology.
  24. Kalnes,Tom N.; Voskoboynikov,Timur V., Conversion of oxygenate to propylene using moving bed technology and a separate heavy olefin interconversion step.
  25. Kalnes,Tom N.; Wei,Daniel H.; Glover,Bryan K., Conversion of oxygenate to propylene with selective hydrogen treatment of heavy olefin recycle stream.
  26. Fung,Shun Chong; Levin,Doron; Santiesteban,Jose; Coute,Nicolas P., Conversion of oxygenates to olefins.
  27. Fung,Shun Chong; Levin,Doron; Santiesteban,Jose; Coute,Nicolas P., Conversion of oxygenates to olefins.
  28. Fung,Shun Chong; Levin,Doron; Santiesteban,Jose; Coute,Nicolas P., Conversion of oxygenates to olefins.
  29. Janssen,Marcel J. G.; Xu,Teng; Van Egmond,Cor F.; Kuechler,Keith F.; Vaughn,Stephen N., Conversion process.
  30. Janssen,Marcel J. G.; Xu,Teng; Van Egmond,Cor F.; Kuechler,Keith H.; Vaughn,Stephen N.; Beech, Jr.,James Harding, Conversion process.
  31. Sun Hsiang-ning, Converting oxygenates to olefins in the presence of electromagnetic energy.
  32. Lacijan,Lawrence A.; Myers,Daniel N.; Palmas,Paolo, Direct return of oxygenate recycle stream in olefin production process.
  33. Kuechler Keith H. ; Vaughn Stephen N., Efficient method using liquid water to regenerate oxygenate to olefin catalysts while increasing catalyst specificity to light olefins.
  34. Vora Bipin V. ; Marker Terry L. ; Barger Paul T., Enhanced light olefin production.
  35. Palmas,Paolo; Myers,Daniel N.; Johnson, II,Richard A., External second stage cyclones in olefin production process.
  36. Miller, Lawrence W., Fast-fluidized bed reactor for MTO process.
  37. Rende, Dean E.; Gorawara, Jayant K.; Leonard, Laura E., Glycols removal and methane conversion process using a supersonic flow reactor.
  38. Shun C. Fung ; Marcel J. G. Janssen BE; Stephen N. Vaughn ; Machteld M. Mertens BE; Albert E. Schweizer ; Luc R. M. Martens BE; Richard B. Hall ; Wilfried J. Mortier BE; Ronald G. Searle ; Y, Heat treating a molecular sieve and catalyst.
  39. Keith H. Kuechler ; Stephen N. Vaughn ; Gary F. Janda ; Russell D. Sellen, High pressure oxygenate conversion process via diluent co-feed.
  40. Shafe, Peter; Sattar, Aziz; Mostofi-Ashtiani, Mohammad Reza; Leonard, Laura E.; Gattupalli, Rajeswar, High temperature quench system and process.
  41. Shafe, Peter; Sattar, Aziz; Mostofi-Ashtiani, Mohammad Reza; Leonard, Laura E.; Gattupalli, Rajeswar, High temperature quench system and process.
  42. Martens,Luc Roger Marc; Vaughn,Stephen N.; Schweizer,Albert Edward; Pierce,John K.; Fung,Shun Chong, Hydrocarbon conversion processes using non-zeolitic molecular sieve catalysts.
  43. Lomax, Franklin D.; Zakaria, Rama A.; Lyubovsky, Maxim; Leviness, Stephen C., Hydrogenating pre-reformer in synthesis gas production processes.
  44. Xu,Teng; Vaughn,Stephen Neil, Increasing ethylene and/or propylene production in an oxygenate to olefins reaction systems.
  45. Gattupalli, Rajeswar R.; Bozzano, Andrea G.; Leonard, Laura E.; Funk, Gregory A., Integrated pyrolysis and oxygenate to olefin process.
  46. Wang,Kun; Bare,Richard Earl; Levin,Doron; Vartuli,James Clark; Cao,Guang; Hall,Richard B., Interior surface modifications of molecular sieves with organometallic reagents and the use thereof for the conversion of oxygenates to olefins.
  47. Ronald G. Searle ; Krishna K. Rao ; Gary D. Mohr ; Xiaobing Feng, Iron, cobalt and/or nickel containing ALPO bound SAPO molecular sieve catalyst for producing olefins.
  48. Cao, Guang; Brody, John F.; Shah, Matu J., Light olefin selective oxygenate conversion process using CHA framework type aluminosilicate.
  49. Marcel J. G. Janssen BE; Machteld M. Mertens BE; Cornelius W. M. Van Oorschot BE; Stephen N. Vaughn ; Hsiang-Ning Sun ; David R. Lumgair, Maintaining acid catalyst sites in SAPO molecular sieves.
  50. Janssen Marcel J. G.,BEX ; Mertens Machteld M.,BEX ; Van Oorschot Cornelius W. M.,BEX ; Vaughn Stephen N. ; Sun Hsiang-Ning ; Lumgair David R., Maintaining acid catalyst sites in sapo molecular sieves.
  51. Keith H. Kuechler ; Marcel J. G. Janssen BE; Stephen N. Vaughn ; Shun C. Fung ; Nicolas P. Coute ; Jeffrey Scott Smith ; James R. Lattner ; Jeffrey L. White ; Teng Xu ; William L. Kuechler, , Making an olefin product from an oxygenate.
  52. Bedard, Robert L.; Naunheimer, Christopher; Towler, Gavin P.; Leonard, Laura E.; Dudebout, Rodolphe; Woodcock, Gregory O.; Mittendorf, Donald L., Methane conversion apparatus and process using a supersonic flow reactor.
  53. Bedard, Robert L.; Naunheimer, Christopher; Towler, Gavin P.; Leonard, Laura E.; Woodcock, Gregory O.; Mittendorf, Donald L., Methane conversion apparatus and process using a supersonic flow reactor.
  54. Gary F. Janda, Methanol, olefin, and hydrocarbon synthesis process.
  55. Gary F. Janda ; Keith H. Kuechler, Methanol, olefin, and hydrocarbon synthesis process.
  56. Senetar,John J.; Johnson, II,Richard A., Method and system for catalytically converting oxygenates and regenerating and stripping catalyst.
  57. Chang, Clarence D.; Santiesteban, Jose G., Method for converting alkanes to oxygenates.
  58. Shun C. Fung ; Chunshe Cao, Method for converting an oxygenate feed to an olefin product.
  59. James R. Lattner ; Stephen N. Vaughn ; Keith H. Kuechler ; David C. Skouby ; Hsiang-Ning Sun, Method for converting oxygenates to olefins.
  60. Lattner, James R.; Vaughn, Stephen N.; Kuechler, Keith H.; Skouby, David C.; Sun, Hsiang-Ning, Method for converting oxygenates to olefins.
  61. Shun C. Fung ; James R. Lattner ; Stephen N. Vaughn ; Richard B. Hall ; Hsiang-Ning Sun ; Ron G. Searle ; Luc R. M. Martens BE, Method for improving light olefin selectivity in an oxygenate conversion reaction.
  62. Sills, Ronald; Fleisch, Theo H.; Makogon, Taras Y.; Briscoe, Michael D., Method for transporting synthetic products.
  63. Cao,Guang; Shah,Matu J., Method of synthesizing molecular sieves.
  64. Luc R. Martens BE; Stephen N. Vaughn ; Albert E. Schweizer ; John K. Pierce, Methods of removing halogen from non-zeolitic molecular sieve catalysts.
  65. Chang,Yun feng; Vaughn,Stephen N.; Martens,Luc R. M.; Clem,Kenneth R., Molecular sieve catalyst composition, its making and use in conversion process.
  66. Chang, Yun Feng; Vaughn, Stephen N.; Clem, Kenneth R.; Martens, Luc R.; Hu, Weiguo, Molecular sieve catalyst composition, its making and use in conversion processes.
  67. Vaughn,Stephen N.; Chang,Yun feng; Martens,Luc R. M.; Clem,Kenneth R.; Mertens,Machteld M.; Schweizer,Albert E., Molecular sieve catalyst composition, its making and use in conversion processes.
  68. Chang,Yun Feng; Vaughn,Stephen N.; Martens,Luc Roger Marc; Sprinkle,Jeffrey Wayne; Walker,Ian Nathaniel, Molecular sieve catalyst composition, its production and use in conversion processes.
  69. Chang,Yun Feng; Vaughn,Stephen N.; Martens,Luc Roger Marc; Sprinkle,Jeffrey Wayne; Walker,Ian Nathaniel, Molecular sieve catalyst composition, its production and use in conversion processes.
  70. Chang,Yun feng; Vaughn,Stephen N.; Martens,Luc R. M.; Baumgartner,Joseph E.; Soled,Stuart L.; Clem,Kenneth R., Molecular sieve catalyst compositions, its making and use in conversion processes.
  71. Janssen, Marcel J. G., Molecular sieve catalyst compositions, their production and use in conversion processes.
  72. Levin,Doron; Vartuli,James Clark, Molecular sieve compositions, catalyst thereof, their making and use in conversion processes.
  73. 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.
  74. Levin,Doron; Vartuli,James Clark, Molecular sieve compositions, catalysts thereof, their making and use in conversion processes.
  75. Levin,Doron; Vartuli,James Clark, Molecular sieve compositions, catalysts thereof, their making and use in conversion processes.
  76. Levin,Doron; Vartuli,James Clark, Molecular sieve compositions, catalysts thereof, their making and use in conversion processes.
  77. Lattner,James R.; Smith,Jeffrey S.; Coute,Nicolas P.; Kuechler,Keith H., Multiple riser reactor.
  78. Lattner,James R.; Smith,Jeffrey S.; Coute,Nicolas P.; Kuechler,Keith H., Multiple riser reactor.
  79. Kuechler,Keith Holroyd; Lattner,James R.; Coute,Nicolas P.; Smith,Jeffrey S.; Krieger,Justin Leonard, Multiple riser reactor with centralized catalyst return.
  80. Kuechler,Keith Holroyd; Lattner,James R.; Coute,Nicolas P.; Smith,Jeffrey S.; Krieger,Justin Leonard, Multiple riser reactor with centralized catalyst return.
  81. Bozzano, Andrea G.; Glover, Bryan K.; Pujado, Peter R., Preparing a light-olefin containing product stream from an oxygenate-containing feed stream using reactors directing a flow of a fluidized dual-function catalyst system.
  82. Xu,Teng; Coute,Nicolas P.; Clem,Kenneth R.; Levin,Doron; Vartuli,James C., Pretreating a catalyst containing molecular sieve and active metal oxide.
  83. 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.
  84. Keith H. Kuechler ; James R. Lattner, Process for converting oxygenates to olefins with direct product quenching for heat recovery.
  85. Kuechler Keith H. ; Lattner James R., Process for converting oxygenates to olefins with direct product quenching for heat recovery.
  86. Vora,Bipin V.; Pujado,Peter R., Process for enhanced olefin production.
  87. Kuechler Keith H. ; Sun Hsiang-ning ; Kuechler William, Process for increasing the selectivity of a reaction to convert oxygenates to olefins.
  88. Fung, Shun C.; Cao, Chunshe; Xu, Teng, Process for making ethylene and propylene.
  89. Ferrini, Cristina; Herein, Daniel; Linke, David; Rodemerck, Uwe; Kondratenko, Evgeny, Process for preparing silicoaluminophosphate (SAPO) molecular sieves, catalysts containing said sieves and catalytic dehydration processes using said catalysts.
  90. Brown, Stephen H.; Green, Larry A.; Mathias, Mark F.; Olson, David H.; Ware, Robert A.; Weber, William A.; Shinnar, Reuel, Process for producing chemicals from oxygenate.
  91. John J. Senetar ; Lawrence W. Miller ; Linda Shi Cheng ; Mark M. Davis, Process for producing ethylene.
  92. Senetar John J. ; Miller Lawrence W. ; Cheng Linda Shi ; Davis Mark M., Process for producing ethylene.
  93. Barger Paul T. ; Lawson R. Joe ; Vora Bipin V., Process for producing light olefins.
  94. Brown, Stephen H.; Weber, William A.; Shinnar, Reuel; Nariman, Khushrav E.; Green, Larry A.; Mathias, Mark F.; Olson, David H.; Ware, Robert A., Process for producing light olefins.
  95. Mulvaney ; III Robert C. ; Marker Terry L., Process for producing light olefins.
  96. Marker Terry L. ; Gosling Christopher David, Process for producing light olefins using reaction with distillation as an intermediate step.
  97. Marker Terry L., Process for producing polymer grade olefins.
  98. Marker Terry L., Process for producing polymer grade olefins.
  99. Vora Bipin V. (Darien IL) Pujado Peter R. (Palatine IL), Process for producing propylene oxide.
  100. Linda S. Cheng ; Joel Padin ; Salil U. Rege ; Stephen T. Wilson ; Ralph T. Yang, Process for purifying propylene.
  101. Cheng Linda S. ; Wilson Stephen T., Process for separating propylene from propane.
  102. Chewter, Leslie Andrew; Quevedo Enriquez, Jose Atilio, Process for the preparation of olefins.
  103. Quevedo Enriquez, Jose Atilio, Process for the preparation of olefins.
  104. Mertens, Machteld M.; Engels, Brita; Searle, Ronald G.; Pop, Grigore; Tamas, Irina Rodica; Ganea, Rodica; Birjega, Ruxandra, Process for the synthesis of silicoaluminophosphate molecular sieves.
  105. Stephen N. Vaughn ; Peter G. Ham ; Keith H. Kuechler, Process to control conversion of C4+ and heavier stream to lighter products in oxygenate conversion reactions.
  106. Vora, Bipin V.; Abrevaya, Hayim, Processes and apparatuses for production of polypropylene.
  107. Bricker, Jeffery C.; Chen, John Q.; Coughlin, Peter K., Production of acrylic acid from a methane conversion process.
  108. Bricker, Jeffery C.; Chen, John Q.; Coughlin, Peter K., Production of aromatics from a methane conversion process.
  109. Bricker, Jeffery C.; Chen, John Q.; Coughlin, Peter K., Production of butanediol from a methane conversion process.
  110. Kuechler Keith H. ; Lumgair David R., Production of ethylene using high temperature demethanization.
  111. Janssen Marcel Johannes Gerardus ; Zboray James Andrew, Production of high purity olefins.
  112. Bricker, Jeffery C.; Chen, John Q.; Coughlin, Peter K.; Majumder, Debarshi, Production of nitrogen compounds from a methane conversion process.
  113. Dath, Jean-Pierre; Vermeiren, Walter, Production of olefins.
  114. Bricker, Jeffery C.; Chen, John Q.; Coughlin, Peter K., Production of oxygenates from a methane conversion process.
  115. Bricker, Jeffery C.; Chen, John Q.; Coughlin, Peter K., Production of vinyl chloride from a methane conversion process.
  116. 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., Protecting catalytic activity of a SAPO molecular sieve.
  117. 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.
  118. Marcel J. G. Janssen BE; Cornelius W. M. Van Oorschot BE; Shun C. Fung ; Luc R. M. Martens BE; Wilfried J. Mortier BE; Ronald G. Searle ; Machteld M. Mertens BE; Stephen N. Vaughn, Protecting catalytic activity of a SAPO molecular sieve.
  119. Janssen,Marcel Johannes; Martens,Luc Roger Marc, Protecting catalytic sites of metalloaluminophosphate molecular sieves.
  120. Voskoboynikov, Timur V.; Barger, Paul T.; Chen, John Q., Protection of solid acid catalysts from damage by volatile species.
  121. Palmas, Paolo; Myers, Daniel N., Purge gas streams to stagnant zones within oxygenate-to-olefin reactor.
  122. Palmas, Paolo; Myers, Daniel N.; Glover, Bryan K., Purge gas streams to stagnant zones within oxygenate-to-olefin reactor.
  123. Stevens, Carl J.; Negiz, Antoine; Kuchana, Vinayender, Pyrolytic reactor.
  124. Bozzano, Andrea G.; Kalnes, Tom N.; Stevens, Carl J.; Poklop, Steven M., Reactor system with interstage product removal.
  125. Brookhart,Walter R., Reactor with multiple risers and consolidated transport.
  126. Glover,Bryan K.; Chen,John Q.; Pujado,Peter R.; Vora,Bipin V., Selective conversion of oxygenate to propylene using moving bed technology and a hydrothermally stabilized dual-function catalyst.
  127. Senetar,John J., Selective dimethylether and methanol recovery and recycle in a methanol-to-olefin process.
  128. Senetar,John J., Selective dimethylether recovery and recycle in a methanol-to-olefin process.
  129. Mees,Filip; Vansant,Etienne; Janssen,Marcel Johannes; Martens,Luc R. M., Stabilization of acid catalysts.
  130. Senetar, John J., Start-up of a methanol-to-olefin process.
  131. Negiz, Antoine; James, Robert B.; Stevens, Carl J.; Mittendorf, Donald L., Steady state high temperature reactor.
  132. Vaughn, Stephen N.; Martens, Luc R. M.; Fung, Shun C.; Skouby, David C., Stripping hydrocarbon in an oxygenate conversion process.
  133. Mertens, Machteld Maria, Synthesis and use of AEI structure-type molecular sieves.
  134. Liu Zhongmin,CNX ; Cai Guangyu,CNX ; Guo ; deceased Xiexian,CNX ; Liang ; legal representative by Juan, Synthesis of SAPO-44.
  135. Liu Zhongmin,CNX ; Guo Xiexian,CNX ; Cai Guangyu,CNX, Synthesis of SAPO-44.
  136. Senetar, John J.; Johnson, II, Richard A., System for catalytically converting oxygenates and regenerating and stripping catalyst.
  137. Cao, Guang; Shah, Matu J., Treatment of CHA-type molecular sieves and their use in the conversion of oxygenates to olefins.
  138. Vaughn,Stephen N.; Ou,John Di Yi; Kao,Jar Lin; Sun,Hsiang Ning, Treatment of molecular sieves with silicon containing compounds.
  139. Lawrence W. Miller ; John J. Senetar, Two-stage quench tower for use with oxygenate conversion process.
  140. Lawrence W. Miller ; John J. Senetar, Two-stage quench tower for use with oxygenate conversion process.
  141. Vaughn Stephen Neil ; Lumgair David R. ; Sun Hsiang-ning N., Use of short contact time in oxygenate conversion.
  142. Cheng Linda S. ; Wilson Stephen T., Vacuum swing adsorption process for separating propylene from propane.
  143. Bjorklund,Bradford L.; Chen,John Q., Wet scrubbing and recycle of effluent-contaminating catalyst particles in an oxygenate-to-olefin process.
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