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    • 4. 发明授权
    • Gas flow panels integrated with solid oxide fuel cell stacks
    • 与固体氧化物燃料电池堆集成的气流板
    • US07374834B2
    • 2008-05-20
    • US10935531
    • 2004-09-07
    • John R. JewulskiKevin KristChakravarthy SishtlaJoe PondoRandy PetriDave Goodwin
    • John R. JewulskiKevin KristChakravarthy SishtlaJoe PondoRandy PetriDave Goodwin
    • H01M8/04H01M8/24
    • H01M8/04014H01M8/02H01M8/04089H01M8/2425H01M8/2432H01M8/2483
    • A generally planar, rectangular solid oxide fuel cell stack having a plurality of fuel cell units, each of the fuel cell units having an anode, a cathode and an electrolyte disposed there between, at least one bipolar separator plate disposed between the anode electrode of one fuel cell unit and the cathode electrode of an adjacent fuel cell unit, an oxidant manifold for delivering oxidant to the cathode electrode, a fuel manifold for delivering fuel to the anode electrode, an anode exhaust gas removal manifold for removing anode exhaust gases from the solid oxide fuel cell stack, and a cathode exhaust gas removal manifold for removing cathode exhaust gases from the solid oxide fuel cell stack. At least one ducted gas flow panel is disposed proximate the fuel cell stack and configured in combination with the fuel cell stack to preheat oxidant gas flowing therethrough and, thus, maintain the fuel cell stack in an operational condition without supplemental heating of the oxidant after entering the at least one ducted gas flow panel.
    • 一种具有多个燃料电池单元的大致平面的矩形固体氧化物燃料电池堆,每个燃料电池单元具有设置在其间的阳极,阴极和电解质,至少一个双极隔板,设置在一个阳极电极之间 燃料电池单元和相邻燃料电池单元的阴极电极,用于将氧化剂输送到阴极电极的氧化剂歧管,用于将燃料输送到阳极电极的燃料歧管,用于从固体中去除阳极废气的阳极排气歧管 氧化物燃料电池堆和用于从固体氧化物燃料电池堆去除阴极废气的阴极排气歧管。 至少一个管道气流板设置在燃料电池堆附近,并且与燃料电池堆组合配置以预热流过其中的氧化剂气体,并因此将燃料电池堆保持在操作状态,而不需要进入氧化剂的补充加热 所述至少一个管道气流板。
    • 5. 发明申请
    • Gas flow panels integrated with solid oxide fuel cell stacks
    • 与固体氧化物燃料电池堆集成的气流板
    • US20060051644A1
    • 2006-03-09
    • US10935531
    • 2004-09-07
    • John JewulskiKevin KristChakravarthy SishtlaJoe PondoRandy PetriDave Goodwin
    • John JewulskiKevin KristChakravarthy SishtlaJoe PondoRandy PetriDave Goodwin
    • H01M8/12H01M8/02H01M8/04
    • H01M8/04014H01M8/02H01M8/04089H01M8/2425H01M8/2432H01M8/2483
    • A generally planar, rectangular solid oxide fuel cell stack having a plurality of fuel cell units, each of the fuel cell units having an anode, a cathode and an electrolyte disposed there between, at least one bipolar separator plate disposed between the anode electrode of one fuel cell unit and the cathode electrode of an adjacent fuel cell unit, an oxidant manifold for delivering oxidant to the cathode electrode, a fuel manifold for delivering fuel to the anode electrode, an anode exhaust gas removal manifold for removing anode exhaust gases from the solid oxide fuel cell stack, and a cathode exhaust gas removal manifold for removing cathode exhaust gases from the solid oxide fuel cell stack. At least one ducted gas flow panel is disposed proximate the fuel cell stack and configured in combination with the fuel cell stack to preheat oxidant gas flowing therethrough and, thus, maintain the fuel cell stack in an operational condition without supplemental heating of the oxidant after entering the at least one ducted gas flow panel.
    • 一种具有多个燃料电池单元的大致平面的矩形固体氧化物燃料电池堆,每个燃料电池单元具有设置在其间的阳极,阴极和电解质,至少一个双极隔板,设置在一个阳极电极之间 燃料电池单元和相邻燃料电池单元的阴极电极,用于将氧化剂输送到阴极电极的氧化剂歧管,用于将燃料输送到阳极电极的燃料歧管,用于从固体中去除阳极废气的阳极排气歧管 氧化物燃料电池堆和用于从固体氧化物燃料电池堆去除阴极废气的阴极排气歧管。 至少一个管道气流板设置在燃料电池堆附近,并且与燃料电池堆组合配置以预热流过其中的氧化剂气体,并因此将燃料电池堆保持在操作状态,而不需要进入氧化剂的补充加热 所述至少一个管道气流板。
    • 9. 发明授权
    • JP-8 fuel processor system
    • JP-8燃油处理系统
    • US08173082B1
    • 2012-05-08
    • US11803370
    • 2007-05-14
    • James WangerowAndy HillChakravarthy SishtlaMichael Onischak
    • James WangerowAndy HillChakravarthy SishtlaMichael Onischak
    • C10K3/06B01J8/00
    • B01J8/0257B01J8/0465B01J2208/00495B01J2208/00504B01J2208/0053C10K1/004C10K3/06Y02P20/129
    • A fuel processing system for heavier sulfur-laden hydrocarbon fuels, such as JP-8 and diesel fuels, having a fuel processor in which the sulfur-laden hydrocarbon fuels are reformed using steam reforming, an integrated desulfurization/methanation unit, and a solid oxide fuel cell. The heart of the system is the desulfurization/methanation unit which has a first reactor vessel and a second reactor vessel disposed within the first reactor vessel, forming an enclosed reaction space between the first reactor vessel and the second reactor vessel. A methanation catalyst is provided in the enclosed reaction space or the second reactor vessel. A desulfurization material is provided in the other of the enclosed reaction space and the second reactor vessel. During the normal course of operation, the desulfurization material will reach a saturation point at which it is no longer able to adsorb the sulfur-containing compounds. Contrary to conventional systems in which a fuel containing sulfur is desulfurized prior to methanation in two separate desulfurizer and methanation vessels and the spent desulfurization material is regenerated, the first and second reactor vessels of this invention are separable such that the reactor vessel containing the spent desulfurization material simply can be removed and replaced with a reactor vessel containing fresh desulfurization material.
    • 一种用于较重含硫的碳氢化合物燃料的燃料处理系统,如JP-8和柴油燃料,具有燃料处理器,其中含硫载体的烃燃料使用蒸汽重整,一体式脱硫/甲烷化单元和固体氧化物 燃料电池。 系统的核心是脱硫/甲烷化单元,其具有设置在第一反应器容器内的第一反应器容器和第二反应器容器,在第一反应器容器和第二反应器容器之间形成封闭的反应空间。 在封闭的反应空间或第二反应器容器中提供甲烷化催化剂。 在封闭的反应空间和第二反应器容器的另一个中设置脱硫材料。 在正常运行过程中,脱硫材料将达到不再能吸附含硫化合物的饱和点。 与在两台分离的脱硫器和甲烷化容器中甲烷化之前含硫燃料脱硫和废弃脱硫材料再生的常规系统相反,本发明的第一和第二反应器容器是可分离的,使得含有废脱硫的反应器容器 材料简单地可以被包含新鲜脱硫材料的反应器容器取出并替换。