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首页> 外文期刊>Fuel cells >Redox Tolerance of Thin and ThickNi/YSZ Anodes of Electrolyte-Supported Single-Chamber Solid Oxide Fuel Cells under Methane Oxidation Conditions
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Redox Tolerance of Thin and ThickNi/YSZ Anodes of Electrolyte-Supported Single-Chamber Solid Oxide Fuel Cells under Methane Oxidation Conditions

机译:甲烷氧化条件下电解质支持的单腔固体氧化物燃料电池薄和厚Ni / YSZ阳极的氧化还原容限

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摘要

Redox tolerance of 50 and 500 lm thick Ni/YSZ (yttria-stabilized zirconia) anodes supported on YSZ electrolytes were studied under single-chamber solid oxide fuel cell conditions. Open circuit voltage, electrochemical impedance spectra, and discharge curves of the cells were measured under different methane/oxygen ratios at 700℃. For the cell with the thin anode, a significant degradation accompanying oscillatory behaviors was observed, whereas the cell based on the thick anode was much more stable under the same conditions. In situ local anode resistance (Rs) results indicated that the Ni/NiO redox cycling was responsible for the oscillatory behaviors, and the cell degradation was primarily caused by the Ni reoxidation. Reoxidation of the thick anode took place at a low methane/oxygen ratio, but the anode can be recovered to its original state by switching to a methane rich environment. On the contrary, the thin anode was unable to be regenerated after the oxidation. Microstructure damage of the anode was attributed to its irreversible degradation.
机译:在单室固体氧化物燃料电池条件下,研究了负载在YSZ电解质上的50和500 lm厚的Ni / YSZ(氧化钇稳定的氧化锆)阳极的氧化还原耐受性。在700℃不同甲烷/氧气比下测量电池的开路电压,电化学阻抗谱和放电曲线。对于具有薄阳极的电池,观察到伴随振荡行为的显着降解,而基于厚阳极的电池在相同条件下更加稳定。原位阳极阳极电阻(Rs)结果表明,Ni / NiO氧化还原循环是振荡行为的原因,而电池降解主要是由Ni再氧化引起的。厚阳极的再氧化在较低的甲烷/氧气比率下发生,但是可以通过切换到富含甲烷的环境将阳极恢复到其原始状态。相反,薄阳极在氧化后不能再生。阳极的微观结构损伤归因于其不可逆的降解。

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