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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >The S-Shaped Negative Differential Resistance during the Electrooxidation of H2/CO in Polymer Electrolyte Membrane Fuel Cells: Modeling and Experimental Proof
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The S-Shaped Negative Differential Resistance during the Electrooxidation of H2/CO in Polymer Electrolyte Membrane Fuel Cells: Modeling and Experimental Proof

机译:高分子电解质膜燃料电池中H2 / CO电氧化过程中的S形负压差:建模与实验证明

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摘要

In the present contribution, the operation of a low temperature polymer electrolyte membrane fuel cell (PEMFC) with H2/CO and N2/CO mixtures is studied. The aim of the work is to clarify a discrepancy between earlier experiments with conventional electrochemical arrangements and experiments carried out with PEMFCs: Investigations of CO oxidation with rotating disk electrode (RDE) setups in acidic electrolytes revealed a hysteresis in the polarization curve around the onset overpotential of CO oxidation, which was not found in PEMFCs so far. The proof of a hysteresis in the PEMFC polarization curve could be interesting in terms of fuel cell performance, because it was argued that its presence also influences the oxidation of H2/CO mixtures. Indeed, in the present work, this hysteresis during operation with a N2/CO mixture is found, but it is seen that it disappears once H2 is added. To understand the background of these studies, a spatially lumped model is derived.
机译:在当前的贡献中,研究了具有H2 / CO和N2 / CO混合物的低温聚合物电解质膜燃料电池(PEMFC)的运行。这项工作的目的是澄清常规电化学装置的早期实验与PEMFC进行的实验之间的差异:用酸性电解质中的旋转圆盘电极(RDE)装置对CO氧化进行的研究表明,极化曲线在起始超电势附近有滞后现象到目前为止,在PEMFC中还没有发现CO氧化。就燃料电池性能而言,PEMFC极化曲线中的磁滞现象的证明可能是有趣的,因为有人认为其存在也会影响H2 / CO混合物的氧化。实际上,在当前工作中,在使用N2 / CO混合物的过程中发现了这种磁滞现象,但是可以看到,一旦添加H2,磁滞现象就会消失。为了理解这些研究的背景,推导了空间集总模型。

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