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    • 4. 发明申请
    • INTERNAL CONVECTION CELL
    • 内部对流电池
    • WO2013066829A2
    • 2013-05-10
    • PCT/US2012/062503
    • 2012-10-30
    • FLUIDIC, INC.
    • FRIESEN, Cody A.KRISHNAN, RamkumarFRIESEN, GrantHAYES, Joel
    • H01M8/22
    • 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。
    • 5. 发明申请
    • WATER MANAGEMENT SYSTEM IN ELECTROCHEMICAL CELLS WITH VAPOR RETURN COMPRISING AIR ELECTRODES
    • 具有包含空气电极的蒸汽返回的电化学电池中的水管理系统
    • WO2016160418A1
    • 2016-10-06
    • PCT/US2016/023564
    • 2016-03-22
    • FLUIDIC, INC.
    • KRISHNAN, RamkumarHAYES, JoelFRIESEN, GrantFINK, Shawn
    • H01M12/08
    • H01M8/0485C25B15/08H01M8/04126H01M8/04171H01M10/42H01M12/08Y02E60/128
    • A system and methods for managing water content in one or more electrochemical cell is disclosed. The system includes a gas-phase conduit for receiving humid gas-phase associated with the electrochemical cell, a desiccator unit connected to each electrochemical cell and configured for extracting water from the humid gas-phase, a heater for selectively heating the desiccator unit, and a carbon dioxide (CO2) scrubber connected to the desiccator unit. The system may capture water vapor at the desiccator unit from a humid gas-phase exiting electrochemical cell, or release water vapor in desiccator unit, via actuation of heater, that is transported into the electrochemical cell depending on the mode of operation. The CO2 scrubber may also be used to capture water vapor, based on the mode of operation.
    • 公开了一种或多种电化学电池中用于管理含水量的系统和方法。 该系统包括用于接收与电化学电池相关联的湿气相的气相管道,连接到每个电化学电池并被构造用于从湿气相中提取水的干燥器单元,用于选择性加热干燥器单元的加热器,以及 连接到干燥器单元的二氧化碳(CO 2)洗涤器。 该系统可以从干燥器单元捕获来自离开电化学电池的潮湿气相中的水蒸汽,或者通过致动加热器释放干燥器单元中的水蒸汽,根据操作模式将其传输到电化学电池中。 CO2洗涤器也可用于捕获水蒸气,基于操作模式。
    • 7. 发明申请
    • MIST ELIMINATION SYSTEM FOR ELECTROCHEMICAL CELLS
    • 电化学细胞的消除雾化系统
    • WO2018018037A1
    • 2018-01-25
    • PCT/US2017/043500
    • 2017-07-24
    • FLUIDIC, INC.
    • KRISHNAN, RamkumarHAYES, JoelKLUG, ScottSAMULESON, PatrickTRZEBNY, Craig
    • H01M12/08H01M2/12H01M4/38H01M12/06
    • An electrochemical cell includes a mist elimination system that prevents mist from escaping from the cell chamber and conserves moisture within the cell. An exemplary mist elimination system includes a spill prevention device that reduces or prevents an electrolyte from escaping from the cell chamber in the event of an upset, wherein the electrochemical cell is tipped over. A mist elimination system includes a recombination portion that reacts with hydrogen to produce water, that may be reintroduced into the cell chamber. A mist elimination system includes a neutralizer portion that reacts with an electrolyte to bring the pH closer to neutral, as acid/base reaction. A mist elimination system includes a filter that captures mist that may be reintroduced into the cell chamber. A mist elimination system includes a hydrophobic filter on the outer surface to prevent water and other liquids from entering into the mist elimination system.
    • 电化学电池包括雾消除系统,其防止雾从电池室逸出并保存电池内的水分。 示例性的除雾系统包括防止溢出的装置,该防止溢出的装置在电化学电池翻倒的情况下减少或防止电解质从电池室逸出。 除雾系统包括与氢反应产生水的重组部分,其可以被重新引入到电池室中。 除雾系统包括中和剂部分,其与电解质反应以使pH接近中性,如酸/碱反应。 除雾系统包括过滤器,该过滤器捕获可能被重新引入到单元室中的雾。 除雾系统在外表面包括疏水过滤器以防止水和其他液体进入除雾系统。
    • 8. 发明申请
    • METHOD OF OPERATING AND CONDITIONING ELECTROCHEMICAL CELLS COMPRISING ELECTRODEPOSITED FUEL
    • 运行和调节包含电沉积燃料的电化学电池的方法
    • WO2015057580A1
    • 2015-04-23
    • PCT/US2014/060294
    • 2014-10-13
    • FLUIDIC, INC.
    • TRIMBLE, ToddPUZHAEV, SergeyHAYES, JoelKRISHNAN, RamkumarFRIESEN, Cody, A.
    • H01M12/06H01M10/48H01M10/44
    • H01M12/02H01M10/42H01M10/44H01M12/08Y02E60/128
    • A process for conditioning an electrochemical cell system comprising at least two electrochemical cells comprises selecting from the fuel electrodes of the electrochemical cells groups comprising: a charged group and a reset group. The process also comprises holding the fuel electrodes within the charged group at a predetermined state of charge associated with a set concentration of metal fuel ions in solution in the ionically conductive medium. The process further comprises resetting the fuel electrodes within the reset group. An electrochemical cell system includes a plurality of fuel electrodes and one or more controllers configured to regulate the concentration of reducible metal fuel ions in solution with an ionically conductive medium by maintaining a predetermined state of charge of at least one of the fuel electrodes, and initiate a charging, discharging, or resetting process on at least one other fuel electrode. Other features and embodiments are also disclosed.
    • 用于调节包括​​至少两个电化学电池的电化学电池系统的方法包括从燃料电极选择电化学电池组,包括:充电组和复位组。 该方法还包括将燃料电极保持在带电基团内的预定电荷状态下,与离子导电介质中的溶液中的金属燃料离子的设定浓度相关联。 该过程还包括在复位组内复位燃料电极。 电化学电池系统包括多个燃料电极和一个或多个控制器,其被配置为通过维持至少一个燃料电极的预定充电状态来调节离子导电介质在溶液中的可还原金属离子的浓度,并启动 在至少一个其它燃料电极上的充电,放电或重置过程。 还公开了其它特征和实施例。
    • 9. 发明申请
    • MOISTURE AND CARBON DIOXIDE MANAGEMENT SYSTEM IN ELECTROCHEMICAL CELLS
    • 电化学细胞中的水分和二氧化碳管理系统
    • WO2018018036A1
    • 2018-01-25
    • PCT/US2017/043489
    • 2017-07-24
    • FLUIDIC, INC.
    • KRISHNAN, RamkumarHAYES, JoelFINK, ShawnKLUG, ScottSAMUELSON, Patrick
    • H01M4/38H01M8/0668H01M12/08H01M8/04014H01M8/04007H01M8/04089H01M8/04119H01M12/06
    • An electrochemical cell utilizes an air flow device that draws air through the cell from a scrubber that may be removed while the system is operating. The negative pressure generated by the air flow device allows ambient air to enter the cell housing when the scrubber is removed, thereby enabling continued operation without the scrubber. A moisture management system passes outflow air from the cell through a humidity exchange module that transfers moisture to the air inflow, thereby increasing the humidity of the air inflow. A recirculation feature comprising a valve allow a controller to recirculate at least a portion of the outflow air back into the inflow air. The system may comprise an inflow bypass conduit and valve that allows the humidified inflow air to pass into the cell inlet without passing through the scrubber. The scrubber may contain reversible or irreversible scrubber media.
    • 电化学电池利用空气流动装置,该空气流动装置将空气从系统运行时可能被去除的洗涤器抽吸通过单元。 由气流装置产生的负压允许环境空气在洗涤器被移除时进入电池壳体,由此使得能够在没有洗涤器的情况下继续运行。 湿度管理系统通过湿度交换模块将电池中的流出空气输送出去,从而增加空气流入的湿度。 包括阀的再循环特征允许控制器将流出空气的至少一部分再循环回到流入空气中。 该系统可以包括流入旁路导管和阀,其允许加湿的流入空气不经过洗涤器而进入细胞入口。 洗涤器可能含有可逆的或不可逆的洗涤器介质。