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Modeling the performance and faradaic efficiency of solid oxide electrolysis cells using doped barium zirconate perovskite electrolytes

机译:使用掺杂钡锆钙钛矿电解质模拟固体氧化物电解细胞的性能和游览效率

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Y-doped BaZrO3 (BaZr1-xYxO3-delta, or "BZY"), a proton-conducting ceramic featuring high bulk conductivity and good chemical stability, is a promising electrolyte material for solid oxide electrolysis cells. Further doping with Ce and/or Yb (creating materials "BCZY" and "BCZYYb") can improve conductivity and sintering properties, but at significant penalty to cells' faradaic efficiency (FE). Studies have proposed that reduction of lattice Ce can occur in the hydrogen electrode, which consumes some hydrogen produced by the hydrogen evolution reaction, leading to decreased FE. Despite studies suggesting this phenomenon, the mechanism is largely unknown. We developed a multiphysics model to study the transport of multiple defect species and the performance of BZY, BCZY, and BCZYYb, capturing the tradeoff between enhanced performance at the cost of FE for BCZY and BCZYYb electrolytes compared to BZY. We also found that increasing the water content of the anode gas supply lowers the current output of the cell but results in better FE. The model, which uses several parameters previously unavailable in the literature, was validated to experiments varying temperature, steam water content, and electrolyte material, as well as two performance metrics (performance curves and FE). Results verify and explain observed trends, informing future work on Ce-doped BZY electrolytes. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:Y-Doped Bazro3(Bazr1-XyxO3-Delta,或“BZY”),一种质子导电陶瓷,具有高散装电导率和良好的化学稳定性,是用于固体氧化物电解细胞的有希望的电解质材料。进一步掺杂Ce和/或Yb(创造材料“Bczy”和“Bczyyb”)可以改善导电性和烧结性能,但对细胞的竞争效率(Fe)的罚款有显着罚化。研究提出了在氢电极中可能发生晶格Ce的减少,这消耗了由氢进化反应产生的一些氢,导致Fe降低。尽管有研究表明这种现象,但该机制在很大程度上是未知的。我们开发了一种多体性模型,用于研究多种缺陷种类的运输和BZY,BCZY和BCZYYB的性能,捕获与BZY相比BCZY和BCZYYB电解质成本的增强性能之间的权衡。我们还发现,增加阳极气体供应的含水量降低了电池的电流输出,但导致更好的Fe。使用预先在文献中不可用的若干参数的模型被验证到实验改变温度,蒸汽含水量和电解质材料,以及两个性能度量(性能曲线和Fe)。结果验证并解释了观察到的趋势,告知未来的CE掺杂BZY电解质。 (c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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