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首页> 外文期刊>Journal of Applied Electrochemistry >Propane conversion over a Ru/CGO catalyst and its application in intermediate temperature solid oxide fuel cells
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Propane conversion over a Ru/CGO catalyst and its application in intermediate temperature solid oxide fuel cells

机译:Ru / CGO催化剂上的丙烷转化及其在中温固体氧化物燃料电池中的应用

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摘要

A Ru/CGO catalyst was investigated in combination with a Cu current collector for the direct electro-oxidation and internal reforming of propane in a solid oxide fuel cell. The electrochemical power densities for the direct oxidation were larger than in the internal reforming process at 750 degrees C. The electrochemical performance in the presence of propane was significantly affected by the polarization resistance which was about three times larger than that obtained for the SOFC fed with hydrogen at 750 degrees C. However, out-of-cell steam reforming tests showed a C3H8 conversion to syngas approaching 90% at 800 degrees C. Thus, significant enhancements may be achieved by properly optimizing the anode structure. No formation of carbon deposits was observed both upon operation of the anode in the direct oxidation and internal reforming processes at 750 degrees C.
机译:研究了Ru / CGO催化剂与Cu集电器的结合,用于固体氧化物燃料电池中丙烷的直接电氧化和内部重整。直接氧化的电化学功率密度大于内部重整过程在750摄氏度时的电化学功率密度。存在丙烷的电化学性能受到极化电阻的显着影响,其极化电阻比加有SOFC的SOFC的极化电阻大三倍。氢气在750摄氏度的温度下燃烧。但是,电池外蒸汽重整测试表明,在800摄氏度的温度下,C3H8转化为合成气的比例接近90%。因此,通过适当优化阳极结构可以显着提高效率。在阳极在直接氧化过程中以及在750摄氏度的内部重整过程中均未观察到碳沉积的形成。

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