Recent Advances in High Temperature Electrolysis Cells using LaGaO3-based Electrolyte

Seokhee Lee, Sang Won Lee, Suji Kim, T. Shin
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Abstract

High temperature electrolysis is a promising option for carbon-free hydrogen production and huge energy storage with high energy conversion efficiencies from renewable and nuclear resources. Over the past few decades, yttria-stabilized zirconia (YSZ) based ion conductor has been widely used as a solid electrolyte in solid oxide electrolysis cells (SOECs). However, its high operation temperature and lower conductivity in the appropriate temperature range for solid electrochemical devices were major drawbacks. Regarding improving ionic-conducting electrolytes, several groups have contributed significantly to developing and applying LaGaO3 based perovskite as a superior ionic conductor. La(Sr)Ga(Mg)O3 (LSGM) electrolyte was successfully validated for intermediate-temperature solid oxide fuel cells (SOFCs) but was rarely conducted on SOECs for its high efficient electrolysis performance. Their lower mechanical strengths or higher reactivity with electrode compared with the YSZ electrolysis cells, which make it difficult to choose compatible materials, remain major challenges. In this field, SOECs have attracted a great attention in the last few years, as they offer significant power and higher efficiencies compared to conventional YSZ based electrolysers. Herein, SOECs using LSGM based electrolyte, their applications, high performance, and their issues will be reviewed.
lagao3基电解液高温电解电池研究进展
高温电解是无碳制氢和巨大的能量储存的一个有前途的选择,具有可再生能源和核资源的高能量转换效率。在过去的几十年中,钇稳定氧化锆(YSZ)基离子导体作为固体电解质被广泛应用于固体氧化物电解电池(soec)中。然而,它的主要缺点是工作温度高,电导率在固体电化学器件的适当温度范围内较低。在改善离子导电电解质方面,几个研究小组在开发和应用LaGaO3基钙钛矿作为一种优异的离子导体方面做出了重大贡献。La(Sr)Ga(Mg)O3 (LSGM)电解质已成功用于中温固体氧化物燃料电池(sofc),但由于其高效的电解性能,很少用于soec。与YSZ电解电池相比,其机械强度较低或与电极的反应性较高,这使得难以选择兼容材料,仍然是主要挑战。在这一领域,soec在过去几年中引起了极大的关注,因为与传统的基于YSZ的电解槽相比,soec提供了显著的功率和更高的效率。本文综述了采用LSGM基电解质的soec及其应用、性能和存在的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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