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公开(公告)号:WO02070402A3
公开(公告)日:2002-11-28
申请号:PCT/EP0202367
申请日:2002-03-04
Applicant: SHELL INT RESEARCH , SHELL CANADA LTD
Inventor: MATZAKOS ANDREAS NIKOLAOS , MIKUS THOMAS , WARD JOHN MICHAEL , WELLINGTON SCOTT LEE
IPC: B01D53/22 , B01D69/10 , B01D71/02 , B01J8/00 , B01J8/02 , B01J8/06 , B01J19/24 , B01J23/755 , B01J35/06 , C01B3/32 , C01B3/38 , C01B3/48 , C01B3/50 , C01B3/56 , C01B32/50 , H01M8/06 , C01B31/20
CPC classification number: B01D53/22 , B01D63/062 , B01D2313/38 , B01D2313/42 , B01J8/009 , B01J8/0214 , B01J8/0257 , B01J8/0278 , B01J8/0285 , B01J8/062 , B01J19/2475 , B01J23/755 , B01J35/065 , B01J2208/00212 , B01J2208/00309 , B01J2208/00495 , B01J2208/00504 , B01J2208/0053 , B01J2219/00006 , C01B3/323 , C01B3/384 , C01B3/48 , C01B3/501 , C01B32/50 , C01B2203/0227 , C01B2203/0233 , C01B2203/0283 , C01B2203/041 , C01B2203/0445 , C01B2203/047 , C01B2203/06 , C01B2203/065 , C01B2203/066 , C01B2203/068 , C01B2203/0805 , C01B2203/0811 , C01B2203/0838 , C01B2203/0866 , C01B2203/1047 , C01B2203/1052 , C01B2203/1082 , C01B2203/1205 , C01B2203/1211 , C01B2203/1264 , C01B2203/84 , C01B2203/86 , H01M8/0612 , H01M8/0631 , H01M8/0662 , H01M2300/0051 , Y02C10/10 , Y02E60/526 , Y02P20/126 , Y02P20/129 , Y02P20/152 , Y02P20/52 , Y02P30/30
Abstract: Disclosed is a new process and apparatus for steam reforming of any vaporizable hydrocarbon to produce H2 and CO2, with minimal CO, and no CO in the H2 stream, using a membrane steam reforming (MSR) reactor and flame-less distributed combustion (FDC) which provides great improvements in heat exchange efficiency and load following capabilities to drive the steam reforming reaction. The invention also pertains to a zero emission hybrid power system wherein the produced hydrogen is used to power a high-pressure internally manifolded molten carbonate fuel cell. In addition, the design of the FDC-MSR powered fuel cell makes it possible to capture good concentrations of CO2 for sequestration or use in other processes.
Abstract translation: 公开了一种用于使用膜蒸汽重整(MSR)反应器和无焰分布燃烧(FDC))的任何可汽化烃的蒸汽重整以产生H 2和CO 2,具有最小CO并且在H 2流中不含CO的新方法和装置, 这提供了热交换效率和负载跟随能力以驱动蒸汽重整反应的巨大改进。 本发明还涉及一种零排放混合动力系统,其中所产生的氢气用于为高压内部歧管的熔融碳酸盐燃料电池供电。 此外,FDC-MSR动力燃料电池的设计使得可以捕获良好的二氧化碳浓度以进行封存或用于其他工艺。