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Bubbles in the anode channel and performance of a DMFC: Asymptotic solutions

机译:阳极通道中的气泡和DMFC的性能:渐近解

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摘要

Our recent 1D + 1D model of DMFC, which takes into account gaseous bubbles in the anode channel is analyzed. In this work, we derive asymptotic solution to model equations for the case of small rate of bubbles formation. The formula for the change in the mean current density of the cell due to bubbles is obtained and the effect of bubbles on the limiting current density is rationalized. Physically, the bubbles (i) decrease time-average methanol concentration in the anode channel, which reduces cell performance and (ii) decrease methanol crossover, which improves it. The resulting effect is controlled by parameter γ, which is proportional to the ratio of inlet oxygen and methanol concentrations. If oxygen is in excess, the bubbles strongly decrease cell performance close to the limiting current and have marginal positive effect at small and medium currents. Under lack of oxygen the bubbles almost always dramatically improve performance. Furthermore, in that case there exists optimal stoichiometry of the flows, which provides maximal performance. The origin of these effects is discussed.
机译:我们分析了DMFC的最新1D + 1D模型,该模型考虑了阳极通道中的气泡。在这项工作中,我们得出了气泡形成速率较小的情况下模型方程的渐近解。获得了由于气泡引起的电池平均电流密度变化的公式,并使气泡对极限电流密度的影响合理化。从物理上讲,气泡(i)降低了阳极通道中甲醇的时间平均浓度,从而降低了电池性能;(ii)降低了甲醇的穿越,从而改善了该性能。效果由参数γ控制,该参数与入口氧气和甲醇浓度的比率成比例。如果氧气过量,气泡会严重降低接近极限电流的电池性能,并且在中小电流下具有微弱的正效应。在缺乏氧气的情况下,气泡几乎总是可以显着提高性能。此外,在那种情况下,存在最佳的流化学计量,这提供了最大的性能。讨论了这些影响的起源。

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