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Three Mechanisms for Protecting the PEM Fuel Cell Membrane, Plates and Catalyst

机译:保护PEM燃料电池膜,板和催化剂的三种机制

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Performance of the perfluorinated sulfonic acid polymer electrolyte membrane in PEM fuel cells degrades through a multi-step process. Hydroxyl radicals, formed via crossover gases or reactions of hydrogen peroxide with Fenton-active contaminants, generate hydrogen radicals that attack the backbone of Nafion® causing the release of fluoride anions. Fluoride anions promote corrosion of the plates and catalyst, with the release of transition metals into the fuel cell environment. Transition metal ions catalyze the hydroxyl attack on the Nafion® backbone, resulting in further release of fluoride anions. We present here a new approach for mitigating the membrane degradation and for increasing the overall durability of the fuel cell by interfering with three steps of the membrane degradation cycle: the use of (ⅰ) hydroquinones to neutralize hydroxyl radicals, (ⅱ) aza-crowns for sequestering fluoride anions, and (ⅲ) crown ethers to sequester base metal cations.
机译:PEM燃料电池中的全氟磺酸聚合物电解质膜的性能会通过多步过程而降低。通过交换气体或过氧化氢与Fenton活性污染物的反应形成的羟基自由基产生攻击Nafion®主链的氢自由基,从而释放出氟离子。氟阴离子促进板和催化剂的腐蚀,同时过渡金属释放到燃料电池环境中。过渡金属离子催化羟基对Nafion®主链的攻击,导致氟离子的进一步释放。我们在这里提出一种新的方法,通过干扰膜降解循环的三个步骤来减轻膜降解并提高燃料电池的整体耐久性:使用(ⅰ)对苯二酚中和羟基自由基(ⅱ)氮杂冠螯合氟化物阴离子,和(ⅲ)冠醚螯合贱金属阳离子。

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