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Cross-linker effect in ETFE-based radiation-grafted proton-conducting membranesudII. Extended fuel cell operation and degradation analysis

机译:基于ETFE的辐射接枝质子传导膜中的交联剂效应 ud二。扩展的燃料电池运行和降解分析

摘要

In this study the effect of crosslinker (divinylbenzene (DVB)) content on the chemical stability of poly(ethylene-alt-tetrafluoroethylene) (ETFE) based membranes using an H2O2 solution was carried out. Furthermore, the first long term-testing of single H2/O2 cell over 2180h of an MEA assembled using an optimized ETFE-based membrane prepared by radiation-induced grafting of styrene / DVB and subsequent sulfonation with a graft level of 25 % was carried out. The in situ MEA properties were characterized over the testing period using auxiliary current-pulse resistance, electrochemical impedance spectroscopy, polarization and H2 permeation. It is shown that the crosslinking dramatically improves the ex situ chemical stability, while no significant trend with the crosslinker content was observed. The performance of the tested MEA exhibits a decay rate of 13 μV.h-1 in voltage over the testing time at 500 mA.cm-2 at 80°C, while the hydrogen permeation shows a steady increase over time. This indicates clearly that to some extent changes in the membrane morphology occur over the operating time. The local post mortem analysis of the tested membrane reveals that high degradation was observed in areas adjacent to the O2 inlet and in other areas nearby
机译:在这项研究中,使用H2O2溶液进行了交联剂(二乙烯基苯(DVB))含量对基于聚(乙烯-alt-四氟乙烯)(ETFE)的膜化学稳定性的影响。此外,首次对单个H2 / O2电池进行了2180h的MEA的长期测试,该膜使用通过辐射诱导的苯乙烯/ DVB接枝和随后的接枝水平为25%的磺化制备的优化的ETFE基膜组装而成。在测试期间,使用辅助电流脉冲电阻,电化学阻抗谱,极化和H2渗透对原位MEA特性进行了表征。结果表明,交联显着改善了异位化学稳定性,而未发现交联剂含量的明显趋势。经测试的MEA的性能在80°C的500 mA.cm-2的测试时间内显示出13μV.h-1的电压衰减率,而氢的渗透率随时间稳定增长。这清楚地表明,在一定的操作时间内,膜的形态发生了一定程度的变化。对测试膜的局部验尸分析表明,在O2入口附近的区域和附近的其他区域观察到高降解

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