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Effects of operating conditions on the performances of individual cell and stack of PEM fuel cell

机译:工作条件对PEM燃料电池单个电池和电池堆性能的影响

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摘要

In this study, experiments were carried out to study the effects on the performances of individual cell and stack of PEM fuel cell. In the experiment, there are four key operating conditions that affect the cell performance, and they are gas humidification temperature, cell temperature, assembled torsion, and gas flow rate. A 5-cell stack of PEMFC was used to measure the voltage and current density for individual cell in this experiment. Results reveal that the performances of the center fuel cells are relatively lower than those of the cells on both sides of the stack. It is also shown that stack performance increases with the increase in the anode humidification temperature as well as the center cell of the stack. As for the effect of cell temperature, results indicate that stack performance increases with the increase in cell temperature. It is also disclosed that the performances of individual cell and stack do not change with the increase in the anode gas stoichiometric ratio, but increase with the increase in the cathode gas stoichiometric ratio. In addition, the experiment results also show that the whole stack's performance is enhanced with the increase in the assembling torsion.
机译:在这项研究中,进行实验以研究对PEM燃料电池的单个电池和电池堆性能的影响。在实验中,有四个影响电池性能的关键操作条件,分别是气体加湿温度,电池温度,组装扭力和气体流速。在该实验中,使用5电池的PEMFC电池堆来测量单个电池的电压和电流密度。结果表明,中央燃料电池的性能相对低于电池组两侧的电池性能。还显示出,堆的性能随着阳极加湿温度以及堆的中心电池的增加而增加。至于电池温度的影响,结果表明电池组性能随电池温度的升高而增加。还公开了单个电池和堆叠的性能不随阳极气体化学计量比的增加而变化,而是随阴极气体化学计量比的增加而变化。另外,实验结果还表明,随着装配扭力的增加,整个叠层的性能得到提高。

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