发明公开
EP3053218A1 INTEGRATED POWER GENERATION AND CHEMICAL PRODUCTION USING SOLID OXIDE FUEL CELLS 审中-公开
INTEGRIERTE ENERGIEERZEUGUNG UND CHEMIKALIENPRODUKTION MIT FESTOXID-BRENNSTOFFZELLEN

  • 专利标题: INTEGRATED POWER GENERATION AND CHEMICAL PRODUCTION USING SOLID OXIDE FUEL CELLS
  • 专利标题(中): INTEGRIERTE ENERGIEERZEUGUNG UND CHEMIKALIENPRODUKTION MIT FESTOXID-BRENNSTOFFZELLEN
  • 申请号: EP14792634.9
    申请日: 2014-09-29
  • 公开(公告)号: EP3053218A1
    公开(公告)日: 2016-08-10
  • 发明人: BERLOWITZ, Paul, J.BARCKHOLTZ, Timothy, A.LEE, Anita, S.
  • 申请人: ExxonMobil Research and Engineering Company
  • 申请人地址: 1545 Route 22 East P.O. Box 900 Annandale, NJ 08801-0900 US
  • 专利权人: ExxonMobil Research and Engineering Company
  • 当前专利权人: ExxonMobil Research and Engineering Company
  • 当前专利权人地址: 1545 Route 22 East P.O. Box 900 Annandale, NJ 08801-0900 US
  • 代理机构: ExxonMobil Chemical Europe Inc.
  • 优先权: US201361884565P 20130930; US201361884545P 20130930; US201361884586P 20130930; US201361884376P 20130930; US201361884635P 20130930; US201361884605P 20130930; US201361889757P 20131011; US201414197613 20140305; US201414197430 20140305; US201414197551 20140305; US201414197391 20140305; US201414207691 20140313; US201414207710 20140313; US201414207686 20140313; US201414207711 20140313; US201414207714 20140313; US201414207698 20140313; US201414207693 20140313; US201414207697 20140313; US201414207687 20140313; US201414207728 20140313; US201414207726 20140313; US201414207712 20140313; US201414207699 20140313; US201414207708 20140313; US201414207690 20140313; US201414207721 20140313; US201414207706 20140313; US201414315419 20140626; US201414315479 20140626; US201414315439 20140626; US201414315507 20140626; US201414315527 20140626; US201414486159 20140915
  • 国际公布: WO2015048626 20150402
  • 主分类号: H01M8/24
  • IPC分类号: H01M8/24 H01M8/04 H01M8/14 C01B3/38 H01M8/06 H01M8/10
INTEGRATED POWER GENERATION AND CHEMICAL PRODUCTION USING SOLID OXIDE FUEL CELLS
摘要:
In various aspects, systems and methods are provided for operating a solid oxide fuel cell at conditions that can improve or optimize the combined electrical efficiency and chemical efficiency of the fuel cell. Instead of selecting conventional conditions for maximizing the electrical efficiency of a fuel cell, the operating conditions can allow for output of excess synthesis gas and/or hydrogen in the anode exhaust of the fuel cell. The synthesis gas and/or hydrogen can then be used in a variety of applications, including chemical synthesis processes and collection of hydrogen for use as a fuel.
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