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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Numerical Analysis of the Possibility of Carbon Formation in Planar SOFC Fueled With Syngas
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Numerical Analysis of the Possibility of Carbon Formation in Planar SOFC Fueled With Syngas

机译:合成气供油的平面SOFC生成碳的可能性的数值分析

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摘要

As one of the most important energy sources, coal can be gasified to syngas in order for it be used in solid oxide fuel cell (SOFC) efficiently and cleanly. However, the big challenge of the utilization of the syngas in SOFC is the carbon formation activity in the Ni/YSZ anode. In this work, according to the fully three-dimensional models of chemical/electrochemical, heat/mass transfer and overpotential, the effects of fuel components on the performance and carbon formation of SOFC were analyzed. From the results, the increment of water steam and carbon dioxide may inhibit the carbon deposition. However, massive water steam and carbon dioxide reduces the output voltage of SOFC as well. The proper molar fraction of hydrogen in syngas also reduces the carbon formation activity. The addition of carbon monoxide may narrow down the region of carbon formation but enhance the carbon formation activity near the fuel inlet of SOFC. Moreover, the existence of methane results in the sharply carbon formation; thus, the methane should be removed as clear as possibly in syngas.
机译:作为最重要的能源之一,煤可以被气化为合成气,以便将其高效,清洁地用于固体氧化物燃料电池(SOFC)。然而,在SOFC中利用合成气的最大挑战是Ni / YSZ阳极中的碳形成活性。在这项工作中,根据化学/电化学,热/质量传递和超电势的完整三维模型,分析了燃料成分对SOFC性能和碳形成的影响。从结果来看,水蒸汽和二氧化碳的增加可能会抑制碳沉积。但是,大量的水蒸气和二氧化碳也会降低SOFC的输出电压。合成气中氢的适当摩尔分数也降低了碳形成活性。一氧化碳的添加可以使碳形成的区域变窄,但是增加了SOFC燃料入口附近的碳形成活性。此外,甲烷的存在会导致急剧的碳形成。因此,应尽可能清除合成气中的甲烷。

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