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Electrochemical analysis for anode-supported microtubular solid oxide fuel cells in partial reducing and oxidizing conditions

机译:阳极还原的微管固体氧化物燃料电池在部分还原和氧化条件下的电化学分析

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摘要

Microtubular solid oxide fuel cells (SOFCs) with a diameter on the millimeter scale are suitable for small-scale applications such as micro combined heat/power systems and portable power sources. However, the use in reducing purge gas is not practical during start-up and shutdown in the small-scale applications. In this study, the redox tolerance was evaluated for nickel gadolinia-doped ceria (Ni-GDC) anode-supported microtubular SOFCs with an open-end at fuel outlet, when the hydrogen fuel supply was stopped 8 times for 10 min/cycle at 615 °C. The open circuit voltage was unchanged, and the degradation of less than 3% was confirmed after 8 redox cycles. The Ni-GDC anode-supported microtubular SOFCs have redox tolerance at 615 °C. Each electrode polarization resistance can be separated by the distribution of relaxation times (DRT) analysis fromthe measurement of AC impedance between the anode and the cathode.While the anode activation polarization (10-100 Hz) was clarified to increase because of the decrease in the TPB length, the anode concentration polarization (b1 Hz) decreased by the change in pore distribution after redox cycles. The DRT analysis is one of the most effective methods to investigate the mechanism of electrode degradation for microtubular SOFCs.
机译:直径为毫米级的微管固体氧化物燃料电池(SOFC)适用于小型应用,例如微型热电联产系统和便携式电源。然而,在小规模应用中,在启动和关闭期间,减少吹扫气体的使用是不实际的。在这项研究中,当氢燃料供应在615处停止8次,每次10分钟/循环时,评估了镍g掺杂二氧化铈(Ni-GDC)阳极支撑的微管SOFC的氧化还原耐受性,该SOFC具有开放端。 ℃。开路电压不变,并且在8个氧化还原循环后确认降解小于3%。 Ni-GDC阳极支撑的微管SOFC在615°C下具有氧化还原耐受性。可以通过弛豫时间(DRT)分析将每个电极的极化电阻与阳极和阴极之间的AC阻抗的测量结果分开。由于阳极极化强度的降低,澄清了阳极活化极化强度(10-100 Hz)的增加。 TPB长度,阳极浓度极化(b1 Hz)通过氧化还原循环后孔分布的变化而降低。 DRT分析是研究微管SOFC电极降解机理的最有效方法之一。

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