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首页> 外文期刊>Journal of power sources >Asymmetric cycling of vanadium redox flow batteries with a poly(arylene piperidinium)-based anion exchange membrane
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Asymmetric cycling of vanadium redox flow batteries with a poly(arylene piperidinium)-based anion exchange membrane

机译:钒氧化还原流量的不对称循环与聚(亚芳基哌啶)的阴离子交换膜

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摘要

The potential application of a 50 mu m thick anion exchange membrane prepared based on poly(terphenyl piperidinium-co-trifluoroacetophenone) (PTPT) is investigated for vanadium redox flow batteries (VRFBs). The PTPT exhibits a considerably lower vanadium permeation than Nafion 212. Therefore, the self-discharge duration of the VRFB based on PTPT is much longer than the VRFB based on Nafion 212. Besides, PTPT shows oxidative stability almost as good as Nafion 212 during immersion in an ex-situ immersion test for more than 400 h. Comparing the VRFB performance when symmetric and asymmetric electrolyte volumes are used yields interesting results. The results show that asymmetric cycling is more effective and efficient for the VRFB assembled with PTPT than Nafion 212 as the capacity fade of 0.03% cycle(-1), and the highest coulombic efficiency of 98.8% is attained. Furthermore, the color change of the membrane during cycling can be reversed using a straightforward post-treatment method.
机译:研究了基于聚(Terphenyl哌啶-Co-三氟乙酮)(PTPT)制备的50μm厚阴离子交换膜的潜在应用,用于钒氧化还原流量电池(VRFB)。 PTPT表现出比NAFION 212的显着降低的钒渗透。因此,基于PTPT的VRFB的自放电持续时间远比基于Nafion 212的VRFB。此外,PTPT显示出在浸没过程中几乎与Nafion 212一样好的氧化稳定性在前地浸渍试验中超过400小时。使用对称和非对称电解质体积的VRFB性能使用,产生了有趣的结果。结果表明,由于PTPT比Nafion 212组装的VRFB更有效和有效,因为0.03%循环(-1)的容量衰落,并且达到了98.8%的最高库仑效率。此外,可以使用直接的后处理方法反转循环期间膜的颜色变化。

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