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Effects of Current Collector Positions on Temperature and Reactive Current Distributions in a Micro-Tubular Solid Oxide Electrolysis Cell

机译:集电器位置对微管固体氧化物电解细胞温度和反应电流分布的影响

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A two-dimensional tubular model of a Ni+YSZ electrode supported micro-tubular solid oxide electrolysis cell (SOEC) was developed to clarify its temperature distribution on high temperature steam electrolysis. The entropy change of SOEC is endothermic, and the temperature distribution is more complex than that of SOFCs. In addition, in the micro-tubular SOEC, large bias of reaction distributions can be occurred by current collecting position, and it will lead further complicated thermal transport phenomena and big thermal distributions. Therefore, in this model, heat, mass, electric charge transport and electro-chemical reaction were calculated simultaneously. The overpotentials and the temperature changes were validated by experimental i - V curves and temperature changes of micro-tubular SOEC. The numerical results suggest that effects of current collector position were not small and cannot be ignored in micro-tubular SOEC operation.
机译:开发了一种Ni + YSZ电极支撑的微管状固体氧化物电解细胞(SOEC)的二维管状模型,以阐明其在高温蒸汽电解上的温度分布。 SOEC的熵变为吸热,温度分布比SOFC更复杂。另外,在微管SOEC中,通过电流收集位置可以发生大偏差,并将导致进一步复杂的热传输现象和大热分布。因此,在该模型中,同时计算热量,质量,电荷传输和电化学反应。通过实验I-V曲线和微管状SOEC的温度变化验证了过电位和温度变化。数值结果表明,集电器位置的影响不小,在微管状SOEC操作中不能忽略。

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