首页> 外文期刊>Journal of the Ceramic Society of Japan >Degradation study of yttria-doped barium cerate (BCY) electrolyte in protonic ceramic fuel cells under various operating conditions
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Degradation study of yttria-doped barium cerate (BCY) electrolyte in protonic ceramic fuel cells under various operating conditions

机译:质子陶瓷燃料电池中氧化钇掺杂的铈酸钡(BCY)电解质在不同工况下的降解研究

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Yttria doped barium cerate (BCY) electrolyte, Ni+BCY anode supported cells were fabricated, and their stability and the mechanism of their degradation were investigated through constant current tests under various operating conditions, especially negative cell voltage operation (with respect to degradation phenomenon due to cell imbalance in a series connected stack). The results of electrochemical tests ( I – V characteristics and impedance spectra) indicate that the degradation rate was significant when the cell was operated under higher current densities (regardless of the sign of cell voltage) and only the ambient air was used for the cathode. Post-material analyses revealed that microstructural and compositional changes were obvious in the BCY electrolyte and the BCY of the cathode functional layer because of BCY decomposition in the wet atmosphere at the cathode. Thus, the present work concludes that the degradation rate of BCY electrolyte-based cell depends on operating conditions, i.e., the amount of current density (the water vapor production rate at the cathode) and the air flow rate (flushing water vapor at the cathode).
机译:制备了掺杂氧化钇的铈酸钡(BCY)电解质,Ni + BCY阳极支撑的电池,并通过在各种操作条件下进行恒流测试,尤其是在电池电压为负的情况下(关于由于老化引起的降解现象),研究了其稳定性和降解机理。导致串联堆叠中的电池失衡)。电化学测试的结果(IV特性和阻抗谱)表明,当电池在更高的电流密度下工作时(无论电池电压的符号如何),其降解速率非常明显,并且仅将环境空气用作阴极。材料后分析表明,由于阴极湿润环境中的BCY分解,BCY电解质和阴极功能层的BCY中的微观结构和组成变化明显。因此,本工作得出结论,基于BCY电解质的电池的降解速度取决于操作条件,即电流密度(阴极处的水蒸气产生速率)和空气流速(阴极处的冲洗水蒸气)的数量。 )。

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