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Effect of air contaminants on electrolyte degradation in polymer electrolyte membrane fuel cells

机译:空气污染物对聚合物电解质膜燃料电池中电解质降解的影响

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The effect of air contaminants (NH_3, NO_2, H_2S, and SO_2) on electrolyte degradation was evaluated in PEMFCs. 2 ppm of these contaminants were supplied, and the F~- release rate in the cathode effluent water was analyzed under a current density of 1000 mA/cm~2 at 80 ℃. In the case of sulfur species H_2S and SO_2, a significant decrease in cell voltage and an increase in F~ release rate were observed. The electrolyte degradation appears to be accelerated by hydroxyl radicals generated from H_2O_2, which was produced by a sulfur-poisoned Pt catalyst. ~(19)F-NMR analysis of the sulfur-poisoned MEA revealed that the degradation of the cathode ionomer was significant compared to the anode ionomer and the membrane. Degradation of the cathode ionomer was confirmed by experiment with the MEA composed of a hydrocarbon-based membrane and a perfluorosulfonic acid ionomer, in which an increase in the F~- release rate was also observed.
机译:在PEMFC中评估了空气污染物(NH_3,NO_2,H_2S和SO_2)对电解质降解的影响。提供了2 ppm的这些污染物,并在80℃下在1000 mA / cm〜2的电流密度下分析了阴极流出水中的F〜-释放速率。在含硫物种H_2S和SO_2的情况下,观察到电池电压显着下降,F〜释放速率增加。由H_2O_2产生的羟基自由基加速了电解质的降解,H_2O_2是由硫中毒的Pt催化剂产生的。硫中毒的MEA的〜(19)F-NMR分析表明,与阳极离聚物和膜相比,阴极离聚物的降解显着。通过用由烃基膜和全氟磺酸离聚物组成的MEA的实验证实了阴极离聚物的降解,其中还观察到了F-释放速率的增加。

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