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首页> 外文期刊>Journal of solid state electrochemistry >Effect of cosintering of anode-electrolyte bilayer on the fabrication of anode-supported solid oxide fuel cells
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Effect of cosintering of anode-electrolyte bilayer on the fabrication of anode-supported solid oxide fuel cells

机译:阳极电解质双层共烧结对阳极支撑固体氧化物燃料电池制造的影响

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摘要

A comparative study is carried out on the effect of cosintering temperature of anode-electrolyte bilayer on the fabrication and cell performance of anode-supported solid oxide fuel cells from commercially available tape casting materials. It was found that the sintering conditions have profound effects on the anode characteristic and cell performance. For low cosintering temperature as low as 1,250 degrees C, the electrolyte is unable to sinter fully and forms a porous structure which leads to a reduced open-circuit potential and poor cell performance especially under low current output. For further increasing cosintering temperature to 1,350 degrees C, the cell performance was lower under low current operation. However, the cell performance turns out to be better than that of high-temperature cosintering under high current output. Although at temperature as high as 1,500 degrees C the cell performs better than that of low temperature cosintering, the trend turn out to be reverse for high current operating due to less anode surface area resulting from overagglomeration of anode layer. An optimal cosintering temperature of 1,350-1,450 degrees C is recommended for commercially available anode-electrolyte bilayer of anode-supported solid oxide fuel cells.
机译:对阳极-电解质双层的共烧结温度对由市售的带式浇铸材料制造的阳极支撑的固体氧化物燃料电池的制造和电池性能的影响进行了比较研究。发现烧结条件对阳极特性和电池性能具有深远的影响。对于低至1,250摄氏度的低共烧结温度,电解质无法完全烧结并形成多孔结构,这会导致开路电位降低和电池性能下降,特别是在低电流输出下。为了将共烧结温度进一步提高至1350℃,在低电流操作下电池性能降低。然而,在大电流输出下,电池性能证明比高温共烧结更好。尽管在高达1,500摄氏度的温度下,电池的性能要优于低温共烧结,但由于阳极层的过度团聚导致阳极表面积减小,因此在大电流操作下这种趋势反过来了。对于阳极支撑的固体氧化物燃料电池的市售阳极电解质双层,建议最佳的共烧结温度为1,350-1,450摄氏度。

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