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首页> 外文期刊>Electrochimica Acta >Using corrosion-like processes to remove poisons from electrocatalysts: a viable strategy to chemically regenerate irreversibly poisoned polymer electrolyte fuel cells
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Using corrosion-like processes to remove poisons from electrocatalysts: a viable strategy to chemically regenerate irreversibly poisoned polymer electrolyte fuel cells

机译:使用类似腐蚀的过程去除电催化剂中的毒物:化学再生不可逆毒的聚合物电解质燃料电池的可行策略

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摘要

Poisoning of Pt/C catalysts due to SO2 on a rotating disk electrode (RDE), and as part of the cathode layer in a single cell fuel cell and fuel cell stack are studied in terms of the system performance, and the effect of electrochemical and chemical post treatment to remove the adsorbed sulphur-containing species. It is found that external polarisation can only recover the ORR performance of catalyst on an RDE after SO2 poisoning when an applied potential of 1.6 V(RHE) is used for 1 ks. An alternative approach is to use ozone, as in the presence of this species, the electrode potential is raised to similar to 1.6V(RHE) due to the high potential of the ozone reduction reaction. The high open circuit potential leads to a mixed potential and was found also to be highly efficient at removing the poison via coupled ozone reduction and poison oxidation. The ozone process is found to work efficiently at the catalyst level as shown through rotating disk electrode studies and also in single cell fuel cells. Furthermore we demonstrate for the first time the recovery of a SO2 poisoned fuel cell stack using the mixed-potential approach and ozone as a reactant. The cleaning process is fast (similar to 10 minutes), occurs at room temperature, and does not require any special modification to the fuel cell. The process may be applicable to a wide range of poisons which can be oxidatively removed from platinum at high potentials. (C) 2016 The Author(s). Published by Elsevier Ltd.
机译:从系统性能以及电化学和化学反应的影响方面研究了旋转盘电极(RDE)上SO2以及作为单电池燃料电池和燃料电池堆阴极层一部分的Pt / C催化剂中毒问题。化学后处理以去除吸附的含硫物质。发现当使用1.6 V(RHE)的施加电势1 ks时,外部极化只能恢复SO2中毒后RDE上催化剂的ORR性能。一种替代方法是使用臭氧,因为在存在这种物质的情况下,由于臭氧还原反应的高电势,电极电势升高至类似于1.6V(RHE)。高的开路电势导致混合电势,并且还被发现通过耦合的臭氧还原和毒物氧化在去除毒物方面非常有效。通过旋转圆盘电极研究表明,臭氧工艺在催化剂水平上也能有效地发挥作用,而且在单电池燃料电池中也是如此。此外,我们首次展示了使用混合电位法和臭氧作为反应物回收SO2中毒的燃料电池堆的方法。清洁过程快速(大约10分钟),在室温下进行,不需要对燃料电池进行任何特殊修改。该方法可适用于多种毒物,这些毒物可以在高电势下从铂中氧化去除。 (C)2016作者。由Elsevier Ltd.发布

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