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CHARACTERIZATION OF ELECTROCHEMICAL PROPERTIES OF MICRO-TUBULAR SOFCs

机译:微管SOFC的电化学性质表征

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摘要

Micro-tubular Solid Oxide Fuel Cells (SOFCs) are fabricated and tested for analysis of electrochemical properties. The impedance spectra from individual 1.8 mm diameter, 1.2 cm length micro-tubular SOFCs are obtained for the intermediate temperature range of 450-550℃. The micro-tubular SOFC used is anode supported, consisting of a NiO and Gd_(0.2)Ce_(0.8)O_(2-x) (GDC) cermet anode, thin GDC electrolyte, and a La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3-y) (LSCF) and GDC composite cathode. The impedance information gained at cell operating temperatures of 450, 500, and 550℃ yielded power density losses of 0.8, 2.3, and 4.6% respectively. Within the operating temperature range of 450-550 ℃, the ceria based 1.8 mm micro-tubular SOFCs were found to have a power densities ranging between 180-740 mW/cm~2.
机译:制造微管固体氧化物燃料电池(SOFC)并进行测试以分析电化学性能。在450-550℃的中间温度范围内,获得了直径为1.8 mm,长度为1.2 cm的微管SOFC的阻抗谱。所用的微管SOFC由阳极支撑,由NiO和Gd_(0.2)Ce_(0.8)O_(2-x)(GDC)金属陶瓷阳极,稀GDC电解质和La_(0.6)Sr_(0.4)Co_组成(0.2)Fe_(0.8)O_(3-y)(LSCF)和GDC复合阴极。在450、500和550℃的电池工作温度下获得的阻抗信息分别导致功率密度损失0.8、2.3和4.6%。在450-550℃的工作温度范围内,发现基于二氧化铈的1.8 mm微管SOFC的功率密度在180-740 mW / cm〜2之间。

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