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Multiple-doped barium cerate proton-conducting electrolytes for chemical-energy cogeneration in solid oxide fuel cells

机译:用于固体氧化物燃料电池化学能热电联产的多掺杂铈酸钡质子传导电解质

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Proton-conducting perovskite oxides such as doped barium cerate and barium zirconate are promising electrolytes for solid oxide fuel cells (SOFCs). Multiple-doped barium cerate perovskite oxide proton conductors of BaCe0.7Zr0.1Y0.2-xNdxO3-delta (0 = x = 0.1) are prepared by solid state reaction and the properties of the fabricated material are characterized by various technologies. Nd doping improves the sinterability and Zr doping enhances the chemical stability in CO2 atmosphere. The electrical conductivity order of the as-prepared electrolytes at elevated temperature in hydrogen atmosphere is: BaCe0.7Y0.17Zr0.1 Nd0.03O3-delta BaCe0.7Y0.2Zr0.2O3-delta BaCe0.7Y0.1Zr0.1Nd0.1O3-delta. Ethane is selectively dehydrogenated to ethylene with cogeneration of electrical power in the SOFC operated at 650 -700 degrees C. The maximum power density of the SOFC is 123 mW cm(-2) for ethane fuel and 138 mW cm(-2) for hydrogen fuel at the 700 degrees C. These unique features make the multiple doped barium cerate perovskite oxide a promising electrolyte for chemical-energy cogeneration in SOFCs. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:质子传导钙钛矿氧化物,例如掺杂的铈酸钡和锆酸钡,是用于固体氧化物燃料电池(SOFC)的有希望的电解质。通过固相反应制备了BaCe0.7Zr0.1Y0.2-xNdxO3-δ(0 <= x <= 0.1)的多掺杂铈钡钙钛矿氧化物质子导体,并通过多种技术表征了所制备材料的性能。 Nd掺杂提高了烧结性,Zr掺杂提高了CO2气氛中的化学稳定性。氢气气氛下高温下制备的电解质的电导率顺序为:BaCe0.7Y0.17Zr0.1Nd0.03O3-δ>BaCe0.7Y0.2Zr0.2O3-δ> BaCe0.7Y0.1Zr0.1Nd0.1O3 -三角洲。在650 -700摄氏度下运行的SOFC中,乙烷选择性地脱氢成乙烯,同时产生电能。SOFC的最大功率密度对于乙烷燃料为123 mW cm(-2),对于氢为138 mW cm(-2)燃料在700摄氏度的温度下燃烧。这些独特的特性使多重掺杂的铈钡钙钛矿氧化物成为SOFC中化学能热电联产的有前途的电解质。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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