首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Study of different bimetallic anodic catalysts supported on carbon for a high temperature polybenzimidazole-based direct ethanol fuel cell
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Study of different bimetallic anodic catalysts supported on carbon for a high temperature polybenzimidazole-based direct ethanol fuel cell

机译:碳负载的不同双金属阳极催化剂用于高温聚苯并咪唑基直接乙醇燃料电池的研究

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摘要

In this work, two different catalysts, Pt-Ru (1:1), Pt-Sn (1:1), supported on both non-activated and activated carbon for the electro-oxidation of ethanol were studied in a H3PO4 doped polybenzimidazole-based fuel cell, using vapor fed ethanol and operating in the range of 150-200 °C. The catalysts were synthesized using NaBH4 as reducing agent and were characterized by X-ray diffraction, inductively coupled plasma-atomic emission spectroscopy and temperature programmed reduction. The best performance was reached at the highest temperature and with the catalyst based on Pt-Ru/C_(act), using activated carbon as support. The best results for the Ru-based catalyst can be explained by the higher level of alloying reached for the Ru than that for Sn, which modifies the crystalline structure of Pt and enhances the activity oxidation of ethanol and of intermediates that can be generated during the oxidation of ethanol.
机译:在这项工作中,在H3PO4掺杂的聚苯并咪唑中研究了两种不同的催化剂Pt-Ru(1:1),Pt-Sn(1:1)负载在非活性炭和活性炭上用于乙醇的电氧化。燃料电池,使用蒸气供给的乙醇,在150-200°C的温度范围内运行。以NaBH4为还原剂合成了催化剂,并通过X射线衍射,电感耦合等离子体原子发射光谱和程序升温还原进行了表征。使用活性炭作为载体,基于Pt-Ru / C_(act)的催化剂在最高温度下达到了最佳性能。 Ru基催化剂的最佳结果可以解释为Ru的合金化程度高于Sn的合金化程度,这修饰了Pt的晶体结构并增强了乙醇和乙醇生成过程中可能产生的中间体的活性氧化。乙醇的氧化。

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