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ANODIC CONCENTRATION POLARIZATION IN SOFCs

机译:SOFC中的阳极浓度极化

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Concentration polarization is important because it determines the maximum power output of a solid oxide fuel cell (SOFC) at high fuel utilization. Anodic concentration polarization occurs when the demand for reactants exceeds the capacity of the porous ceramic anode to supply them by gas diffusion mechanisms. High tortuosities (bulk diffusion resistances) are often assumed to explain this behavior. However, recent experiments show that anodic concentration polarization originates in the immediate vicinity of the reactive triple phase boundary (TPB) sites near the anode/electrolyte interface. A model is proposed to describe how concentration polarization is controlled by two localized phenomena: competetive adsorption of reactants in areas adjacent to the reactive TPB sites, followed by relatively slow surface diffusion to the reactive sites. Results suggest that future SOFC design improvements should focus on optimization of the reactive area, adsorption, and surface diffusion at the anode/electrolyte interface.
机译:浓度极化是重要的,因为它确定了高燃料利用率下固体氧化物燃料电池(SOFC)的最大功率输出。当反应物的需求超过多孔陶瓷阳极的容量以通过气体扩散机构供应它们时,发生阳极浓度极化。通常假设高曲折(散装扩散电阻)解释这种行为。然而,最近的实验表明,阳极浓度偏振始终始终在阳极/电解质界面附近的反应性三相边界(TPB)位点的立即附近。提出了一种模型来描述如何通过两个局部现象来控制浓度极化:竞争性吸附反应性TPB位点附近的反应物的吸附,其次是对反应性位点相对较慢的表面扩散。结果表明,未来的SOFC设计改进应专注于阳极/电解质界面处的反应区域,吸附和表面扩散的优化。

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