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Influence of anodic gas recirculation on solid oxide fuel cells in a micro combined heat and power system

机译:微型热电联产系统中阳极气体再循环对固体氧化物燃料电池的影响

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The recycle of anode depleted gas has been employed in solid oxide fuel cell systems for the advantage of reusing a fraction of the exhaust rich in steam for the reforming reaction in the cell and reformer. In this work the effect of anode gas recirculation is analyzed at cell and reformer level. The use of a one dimensional fuel cell model gives a novel point of view at cell level of the temperature and gas composition profile stream-wise the cell channel. A baseline configuration without the use of anode off-gas recycling is compared with a configuration which includes the recirculation of the anode gases. Methane is considered as a fuel. The use of anode gas recycle advantageously increases the cell CO_2 molar fraction in both the reformer and in the cell flow passages. The configuration with the recycle produces higher peak cell temperatures due to a less effective endothermic reforming process; also, the reversed water gas shift reaction is found to increase in CO molar fraction. This produces a lower steam-to-carbon ratio within the cell. In order to mitigate steep temperature gradients, it is found that fuel utilization in the cell-stack should be reduced.
机译:阳极贫化气体的再循环已用于固体氧化物燃料电池系统中,其优点在于将一部分富含蒸汽的废气再利用于电池和重整器中的重整反应。在这项工作中,在电池和重整器级别分析了阳极气体再循环的影响。一维燃料电池模型的使用在温度和气体成分分布的电池水平上沿电池通道提供了一种新颖的观点。将不使用阳极废气再循环的基准配置与包括阳极气体再循环的配置进行了比较。甲烷被认为是燃料。阳极气体再循环的使用有利地增加了重整器和电池流动通道中的电池CO 2摩尔分数。循环的配置由于吸热重整过程效率较低而产生较高的峰值电池温度。同样,发现反向水煤气变换反应增加了CO的摩尔分数。这会在电池内产生较低的蒸汽碳比。为了减轻陡峭的温度梯度,发现应该降低电池堆中的燃料利用率。

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