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Effect of operative conditions on a PEFC stack performance

机译:操作条件对PEFC烟囱性能的影响

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The operative conditions influence the performance of a polymer electrolyte fuel cell (PEFC). In particular, when a multi-cell (stack) instead of a single cell is investigated, a proper water management and flow stoichiometric ratio are essential for obtaining high electrical conversion efficiency. In this paper, a five cell air cooled PEM fuel cell stack was designed and realized, and systematic studies on the influence of the reactants humidification have been carried out to optimize the operative conditions. Polarization curves and time test at a fixed current have been conducted for various cathode (RHC) and anode (RHA) inlet humidity conditions. In particular, a small decay and low performance were obtained for RHA and RHC < 70% and a considerable decay and low performance for RHA and RHC > 70%. A good compromise for water management, in terms of decay and performance, is obtained when a symmetrical RH of 70% was used, because in this case an optimal water balance was probably reached considering that high flow of gases was used. In fact, insufficient water content implies a lower ion conductivity of the membrane whereas excess of water yields to flooding of the electrodes and parasitic losses due to the presence of water in the gas channels. Consequently, these effects lead to a lowering of voltages during lifetime tests. In any case, the cathode RH has a stronger influence on the stack decay compared to the anode one. In the optimal selected conditions of RH a constant and stable power of about 55 W (at 20 A) was obtained during the 15 h of operation.
机译:操作条件影响聚合物电解质燃料电池(PEFC)的性能。特别地,当研究多电池(堆)而不是单个电池时,适当的水管理和流量化学计量比对于获得高电转换效率是必不可少的。本文设计并实现了一种五单元风冷PEM燃料电池堆,并针对反应物加湿的影响进行了系统研究,以优化操作条件。已针对各种阴极(RHC)和阳极(RHA)入口湿度条件进行了在固定电流下的极化曲线和时间测试。特别是,对于RHA和RHC <70%,获得小的衰减和低性能,而对于RHA和RHC> 70%,则获得相当大的衰减和低性能。当使用70%的相对RH时,就衰减和性能而言,在水管理方面取得了很好的折衷,因为在这种情况下,考虑到使用高流量的气体,可能达到了最佳的水平衡。实际上,水含量不足意味着膜的离子电导率较低,而过量的水会导致电极溢流和由于气体通道中存在水而导致的寄生损失。因此,这些影响会导致寿命测试期间电压降低。在任何情况下,与阳极相比,阴极RH对电池堆衰减的影响更大。在RH的最佳选择条件下,运行15 h期间获得了约55 W(在20 A下)的恒定且稳定的功率。

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