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Effects of operating parameters on performance of a proton exchange membrane fuel cell

机译:操作参数对质子交换膜燃料电池性能的影响

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The performance of a proton exchange membrane fuel cell (PEMFC) under various operating conditions was investigated experimentally using dry and humidified hydrogen and oxygen as reactant and oxidant gases, respectively. Experiments have been carried out on a single PEM fuel cell with the active area of 5 cm~2. The results showed that the most important factor affecting the performance of PEMFC is the mass transport limitation including the transport of reactant and oxidant gases to active sites of catalyst layer, the transport of the proton from the anode side to the cathode side through the membrane, and the transport of produced water from the cathode side to the anode side by back diffusion mechanism. Operating parameters that examined in this paper i.e. temperatures, pressures, and humidity of reactant gases could decrease these limitations and improve the performance of the fuel cell. Based on these investigations, the optimum conditions are operation at higher pressure and elevated temperature with the humidified reactant gases. Furthermore, pressurized cathode side has better affected on the performance of the PEM fuel cell than pressurized anode side.
机译:使用干燥和加湿的氢气和氧气分别作为反应物和氧化剂气体,通过实验研究了质子交换膜燃料电池(PEMFC)在各种操作条件下的性能。已经在具有5 cm〜2的有效面积的单个PEM燃料电池上进行了实验。结果表明,影响PEMFC性能的最重要因素是传质限制,包括反应物和氧化剂气体向催化剂层活性部位的迁移,质子从阳极到阴极通过膜的迁移,以及通过反扩散机制将产出水从阴极侧传输到阳极侧。本文研究的运行参数,即反应气体的温度,压力和湿度,可以减少这些限制并改善燃料电池的性能。基于这些研究,最佳条件是在较高的压力和较高的温度下,使用湿润的反应气体进行操作。此外,加压阳极侧比加压阳极侧对PEM燃料电池的性能有更好的影响。

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