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Performance enhancement of a direct borohydride fuel cell in practical running conditions

机译:实际运行条件下直接硼氢化物燃料电池的性能增强

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To investigate the possibility of a cost-effective direct borohydride fuel cell (DBFC), the performance enhancement of a single cell is investigated under practical running conditions by adopting non-precious metal for the anode. Fluorinated Zr-based AB_2-type hydrogen storage alloy with an effective area of 100 cm~2 is selected as the anode catalyst. To minimize pressure loss from the enlarged cell size, a parallel-type anode channel is designed, then the principal reasons for performance degradation are analyzed. Single-cell performance is mainly enhanced by adopting a corrugated anode design, applying an anti-corrosion coating on the cathode channel, and controlling the fuel flow-rate and air humidity. The cell performance is estimated simply by measuring the wall temperature of the cell.
机译:为了研究具有成本效益的直接硼氢化物燃料电池(DBFC)的可能性,在实际运行条件下通过采用非贵金属作为阳极来研究单个电池的性能增强。选择有效面积为100 cm〜2的氟化Zr基AB_2型储氢合金作为阳极催化剂。为了最大程度地减小因增大电池尺寸而造成的压力损失,设计了并联型阳极通道,然后分析了性能下降的主要原因。单电池性能主要通过采用波纹状阳极设计,在阴极通道上施加防腐涂层以及控制燃料的流量和空气湿度来增强。只需通过测量电池壁温度即可估算电池性能。

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