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    • 9. 发明申请
    • Fuel cell
    • 燃料电池
    • US20060040153A1
    • 2006-02-23
    • US11205200
    • 2005-08-17
    • Hiromi TokoiNariyoshi KobayashiShin Takahashi
    • Hiromi TokoiNariyoshi KobayashiShin Takahashi
    • H01M8/06H01M8/12
    • H01M8/04089H01M8/04007H01M8/0637H01M8/0662H01M8/1213H01M8/1246H01M8/243Y02E60/525Y02E60/566Y02P70/56
    • In a solid oxide fuel cell, the nonuniformity of temperature distribution in the axial direction of a solid electrolyte, the decrease in cell performance caused by a decreased effective cell reaction area, and the damage to cell due to thermal stress generated by a temperature difference are restrained. A reforming catalyst is provided in a high-temperature portion on the anode side to cool the high-temperature portion by means of heat absorption of reforming reaction, or a combustion catalyst is provided in a low-temperature portion on the anode side to heat the low-temperature portion by means of heat generation of combustion reaction, or both of the catalysts are provided, by which the occurrence of variations in temperature in a cell reaction region of anode is prevented. In addition, an air flow from an air introduction tube of cathode is branchingly sprayed so that a cooling effect is produced in the high-temperature portion, by which an effect of restraining the variations in temperature can further be increased.
    • 在固体氧化物燃料电池中,固体电解质的轴向温度分布的不均匀性,由于有效的电池反应面积的降低引起的电池性能的降低以及由温度差产生的热应力对电池的损坏, 束缚 在阳极侧的高温部分设置重整催化剂,通过重整反应的吸热来冷却高温部分,或者在阳极侧的低温部分设置燃烧催化剂, 提供通过燃烧反应的发热的低温部分或两种催化剂,由此防止阳极的电池反应区域中的温度变化的发生。 此外,来自阴极的空气导入管的空气流被分支喷射,从而在高温部分产生冷却效果,由此可以进一步提高抑制温度变化的效果。
    • 10. 发明授权
    • Fuel cells power generation system
    • 燃料电池发电系统
    • US08173317B2
    • 2012-05-08
    • US11627386
    • 2007-01-26
    • Akira GunjiHiromi TokoiShin Takahashi
    • Akira GunjiHiromi TokoiShin Takahashi
    • H01M8/24
    • H01M8/243H01M8/04104H01M8/2485
    • In a fuel cells power generation system provided with a power generation module having a plurality of fuel cells, the structure is made such that a cross sectional area of at least one of a fuel flow path and an air flow path is larger in an inner portion of the power generation module and smaller in an outer portion thereof. Accordingly, gas tends to flow through the inner portion of the power generation module, a gas flow rate is quickened, and it is possible to uniformize a molar flow rate of the fuel and the air supplied to the fuel cell, even in a state in which a temperature distribution of the module is not uniform within the power generation module.
    • 在设置有具有多个燃料电池的发电模块的燃料电池发电系统中,该结构使得燃料流路和空气流路中的至少一个的横截面积在内部较大 的发电模块,其外侧部分较小。 因此,气体倾向于流过发电模块的内部,气体流量加快,即使在向燃料电池供给的空气中也能够使燃料和空气的摩尔流量均匀化, 在发电模块内模块的温度分布不均匀。