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Performance simulation of planar SOFC using mixed hydrogen and carbon monoxide gases as fuel

机译:混合氢气和一氧化碳气体作为燃料的平面SOFC性能模拟

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The authors investigate in detail the influence of the mixing ratio of hydrogen and carbon monoxide in the fuel on the cell performance of the SOFC through numerical simulations for a single cell plate of the co-flow type planar cell. It is made clear that the cell performance is almost the same and excellent, independent of the mixing ratio of hydrogen and carbon monoxide under the nominal operating condition. The electromotive force of the hydrogen rich fuel gas is a little higher than that of the carbon monoxide rich fuel gas. The internal voltage drop in the cell decreases as the fraction of carbon monoxide becomes high. Since the value of the single cell voltage is determined by the balance of these two phenomena, the lowering of the electromotive force is dominant and the single cell voltage of the hydrogen rich fuel gas is higher when the inlet gas temperature is high, whereas the voltage drop reduction is dominant and the single cell voltage of the carbon monoxide rich fuel gas is higher when the temperature is low. The effect of the additional gases of water vapor and carbon dioxide is restricted to the single cell voltage shift, and the qualitative dependence of the single cell voltage on the inlet gas temperature is determined by the mixing ratio of hydrogen and carbon monoxide.
机译:作者通过对共流式平面电池的单电池板进行数值模拟,详细研究了燃料中氢和一氧化碳的混合比对SOFC电池性能的影响。可以清楚地看出,在标称工作条件下,电池性能几乎相同且非常好,与氢气和一氧化碳的混合比无关。富氢燃料气体的电动势略高于一氧化碳燃料气体的电动势。随着一氧化碳含量的增加,电池内部的电压降会降低。由于单电池电压的值由这两种现象的平衡确定,因此电动势的降低是主要的,并且当进气温度较高时,富氢燃料气体的单电池电压较高,而电压为温度降低时,降压起主要作用,并且一氧化碳富燃料气体的单电池电压更高。水蒸气和二氧化碳的其他气体的影响仅限于单电池的电压偏移,而单电池电压对入口气体温度的定性依赖性由氢气和一氧化碳的混合比确定。

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