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    • 2. 发明授权
    • Internal convection cell
    • 内部对流电池
    • US08906563B2
    • 2014-12-09
    • US13532374
    • 2012-06-25
    • Cody A FriesenRamkumar KrishnanGrant FriesenJoel Hayes
    • Cody A FriesenRamkumar KrishnanGrant FriesenJoel Hayes
    • H01M8/22H01M2/38H01M8/06H01M8/08H01M12/08
    • H01M12/08H01M2/385H01M4/8605Y02E60/128
    • An electrochemical cell includes a permeable fuel electrode configured to support a metal fuel thereon, and an oxidant reduction electrode spaced from the fuel electrode. An ionically conductive medium is provided for conducting ions between the fuel and oxidant reduction electrodes, to support electrochemical reactions at the fuel and oxidant reduction electrodes. A charging electrode is also included, selected from the group consisting of (a) the oxidant reduction electrode, (b) a separate charging electrode spaced from the fuel and oxidant reduction electrodes, and (c) a portion of the permeable fuel electrode. The charging electrode is configured to evolve gaseous oxygen bubbles that generate a flow of the ionically conductive medium. One or more flow diverters are also provided in the electrochemical cell, and configured to direct the flow of the ionically conductive medium at least partially through the permeable fuel electrode.
    • 电化学电池包括被配置为在其上支撑金属燃料的可渗透燃料电极和与燃料电极间隔开的氧化剂还原电极。 提供离子导电介质用于在燃料和氧化剂还原电极之间传导离子,以支持燃料和氧化剂还原电极处的电化学反应。 还包括充电电极,选自(a)氧化剂还原电极,(b)与燃料和氧化剂还原电极隔开的分开的充电电极,和(c)可渗透燃料电极的一部分。 充电电极被配置为产生产生离子导电介质流的气态氧气泡。 还在电化学电池中提供一个或多个流量分流器,并且被配置为引导离子导电介质的流动至少部分地通过可渗透的燃料电极。