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CO Tolerance of PEMFC Anodes: Mechanisms and Electrode Designs

机译:PEMFC阳极的CO耐受性:机理和电极设计

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This work presents a review of the current literature regarding the CO tolerance on PEM fuel cells feed with H2 containing CO. From bulk metal alloys to nanoparticles, we summarize the present understanding of what is necessary to achieve the CO tolerance. A discussion is given on the tolerance mechanisms for binary Pt-alloys, emphasizing the achievements gained by using coupled techniques such as X-ray absorption spectroscopy and mass spectrometry. Together with the commonly accepted CO tolerance mechanisms, the so-called bifunctional and electronic mechanisms, alternative chemical pathways are presented as reactions that consume gas-phase CO and the role of such tolerance methods is assessed on the overall cell performance. A brief discussion on the perspective electrocatalysts and improved CO tolerance methods is given to account for the CO tolerance at higher CO contents in the H2 stream, emphasizing the various ways to increase tolerance, whether by oxidation, reduction, or by changes in the CO adsorption/desorption properties.
机译:这项工作提供了有关含H2 的PEM燃料电池进料的CO耐受性的现有文献的综述。从块状金属合金到纳米颗粒,我们总结了目前对达到CO耐受性必要条件的理解。讨论了二元Pt合金的公差机理,重点介绍了通过使用诸如X射线吸收光谱法和质谱法之类的耦合技术所取得的成就。与普遍接受的CO耐受机制(所谓的双功能和电子机制)一起,作为消耗气相CO的反应提供了替代的化学途径,并评估了这种耐受方法在整个电池性能上的作用。简要讨论了透视电催化剂和改进的CO耐受性方法,以说明H2 流中较高CO含量时的CO耐受性,强调了通过氧化,还原或变化来提高耐受性的各种方法。在CO吸附/解吸性能方面。

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