<![CDATA[Evaluation of Sc <ce:inf loc='post'>2</ce:inf>O <ce:inf loc='post'>3</ce:inf>–CeO <ce:inf loc='post'>2</ce:inf>–ZrO <ce:inf loc='post'>2</ce:inf> electrolyte-based tubular fuel cells using activated charcoal and hydrogen fuels]]>
首页> 外文期刊>Electrochimica Acta >2O 3–CeO 2–ZrO 2 electrolyte-based tubular fuel cells using activated charcoal and hydrogen fuels]]>
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2O 3–CeO 2–ZrO 2 electrolyte-based tubular fuel cells using activated charcoal and hydrogen fuels]]>

机译:<![CDATA [SC的评估 2 O 3 -CE 2> 2 -ZRO 2 使用活性炭和氢燃料的电解质管状燃料电池]]>

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AbstractSolid oxide fuel cells (SOFCs), as energy conversion devices, can use a variety of gaseous (hydrogen, methane, ammonia, carbon monoxide) and solid carbon fuels derived from coal and biomass. A critical component of SOFCs is the oxygen-ion conducting electrolyte material. Yttria-stabilised zirconia (YSZ) is a state-of-the-art electrolyte material often used in SOFCs; it has excellent stability in both reducing and oxidising atmospheres, good mechanical strength and compatibility with electrodes. However, YSZ electrolyte has low ionic conductivity, which leads to high voltage losses in electrolyte-supported SOFCs. Scandia-stabilised zirconia has much higher conductivity, but the phase assemblage is complex, with many phases having detrimental effect on the conductivity. Additions of a small quantity of dopants, such as ceria, appear to stabilise the cubic structure. In this work, we investigate the electrochemical performance of ceria-stabilised scandia–zirconia electrolyte supported tubular fuel cells using hydrogen fuel, and directly compare its electrochemical performance with YSZ-electrolyte supported cells using Ce0.9Gd0.1O2–Ag composite electrodes for both types of cells. The electrolyte conductivity and phase assemblage of ceria stabilised scandia-zirconia have been investigated. We also analysed the electrochemical performance of a tubular cell using activated charcoal as a fuel, and nitrogen and carbon dioxide as purge gases. Electrochemical impedance spectroscopy was used to investigate rate-limiting processes and other factors affecting the fuel oxidation reaction.Highlights?Ceria stabilised Sc2O3-ZrO2evaluated as a solid oxide fuel cell electrolyte.?The electrolyte conductivity, stability and phase assemblage have been investigated.?Fuel cell performance evaluated with hydrogen and activated charcoal as fuels.?At 800?°C, ionic conductivity of CeO2-Sc2O3-ZrO2is 2.7 times that of 8mol% Y2O3-ZrO2.?Fuel cell power density with CeO2-Sc2O3-ZrO2is twice that of 8mol% Y2O3-ZrO2.]]>
机译:<![CDATA [ 抽象 固体氧化物燃料电池(SOFC),由于能量转换装置,可以使用多种气体(氢气,甲烷,氨,一氧化碳)和从煤和生物质来源的固体碳燃料。固体氧化物燃料电池的一个关键组成部分是氧离子传导电解质材料。氧化钇稳定的氧化锆(YSZ)通常在SOFC中使用的状态下的最先进的电解质材料;它在还原和氧化气氛优异的稳定性,良好的机械强度和兼容电极。然而,YSZ电解质具有低的离子传导性,这导致在电解质支撑的SOFC的高电压的损失。钪稳定的氧化锆具有高得多的导电性,但相组合是复杂的,与具有该导电率产生不利影响的许多阶段。掺杂剂,如氧化铈的少量的添加,出现以稳定立方结构。在这项工作中,我们调查二氧化铈稳定化钪的氧化锆电解质的电化学性能用氢燃料支撑管型燃料电池,并直接比较YSZ电解质支持细胞中使用的Ce其电化学性能 0.9 0.1 0 2 -Ag对于两种类型的复合材料电极细胞。稳定化钪的氧化锆,二氧化铈的电解质电导率和相组成进行了研究。我们还分析了使用活性炭作为燃料,和氮气和二氧化碳作为净化气体的管状电池的电化学性能。电化学阻抗谱被用来研究的限速过程和其他因素影响燃料的氧化反应 亮点 < CE:简单 - 对ID = “abspara0015” 视图= “所有”> 二氧化铈稳定化的钪 2 0 3 -ZrO 2 评价为固体氧化物型燃料电池用电解质 电解质的导电性,稳定性和相组成进行了研究 燃料电池的性能与氢气评价和活性炭作为燃料 在800℃,的CeO离子电导率<?CE:INF LOC = “POST”> 2 -Sc 2 0 3 -ZrO 2 是2.7倍8mol%Y 2 0 3 -ZrO 2 燃料电池功率密度利用CeO 2 -Sc 2 0 3 -ZrO 2 是8mol%Y 2 0 3 -ZrO 2 ]]>

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