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    • 1. 发明申请
    • IMMERSIBLE GASEOUS OXIDANT CATHODE FOR ELECTROCHEMICAL CELL SYSTEM
    • 电化学电池系统不可或缺的氧化物阴极
    • WO2013066828A2
    • 2013-05-10
    • PCT/US2012/062502
    • 2012-10-30
    • FLUIDIC, INC.
    • FRIESEN, Cody A.KRISHNAN, RamkumarMIHALKA, MichaelFRIESEN, GrantGOODFELLOW, Andrew
    • H01M8/22H01M4/88H01M4/86
    • H01M12/065H01M4/86H01M12/08Y02E60/128Y02E60/50
    • An electrochemical cell system is configured to utilize an oxidant reduction electrode module containing an oxidant reduction electrode mounted to a housing to form a gaseous oxidant space therein that is immersed into the ionically conductive medium. A fuel electrode is spaced from the oxidant reduction electrode, such that the ionically conductive medium may conduct ions between the fuel and oxidant reduction electrodes to support electrochemical reactions at the fuel and oxidant reduction electrodes. A gaseous oxidant channel extending through the gaseous oxidant space provides a supply of oxidant to the oxidant reduction electrode, such that the fuel electrode and the oxidant reduction electrode are configured to, during discharge, oxidize the metal fuel at the fuel electrode and reduce the oxidant at the oxidant reduction electrode, to generate a discharge potential difference therebetween for application to a load.
    • 电化学电池系统被配置为利用氧化剂还原电极模块,其包含安装到壳体上的氧化剂还原电极,以在其中形成浸入离子导电介质中的气态氧化剂空间。 燃料电极与氧化剂还原电极间隔开,使得离子导电介质可以在燃料和氧化剂还原电极之间传导离子,以支持在燃料和氧化剂还原电极处的电化学反应。 延伸穿过气态氧化剂空间的气态氧化剂通道提供氧化剂还原电极的氧化剂供应,使得燃料电极和氧化剂还原电极被配置成在放电期间氧化燃料电极处的金属燃料并减少氧化剂 在氧化剂还原电极处产生用于负载的放电电位差。