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Transient Performance of Micro-Tubular Solid Oxide Fuel Cells

机译:微管固体氧化物燃料电池的瞬态性能

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The transient performance of microtubular solid oxide fuel cells was investigated, with promising results. It was found that a single cell can take less than half a second to adjust to load changes, even when the change steps across the majority of the cell's range. In addition, no undershooting of the voltage step was seen in these tests. When steps of equal size were ranged across the current-voltage spectrum, more distortion was seen at the higher voltages. Cells with cathodes applied by dip-coating (instead of brush-painting) were then dynamically tested in a similar way. Their transient performance was significantly weaker, with visible undershooting and longer re-adjustment times of 10-15 s. This is thought to be due to the difference in the microstructure of the cathode layers made by the different coating methods.
机译:研究了微管固体氧化物燃料电池的瞬态性能,并获得了可喜的结果。已经发现,即使当变化跨越整个单元范围的大部分时,单个单元也可以花费不到半秒的时间来适应负载变化。此外,在这些测试中未发现电压阶跃下冲。当在电流-电压频谱上跨度相等的步长时,在较高的电压下会看到更多的失真。然后以相似的方式对通过浸涂(而不是刷涂)方式施加阴极的电池进行动态测试。它们的瞬态性能明显较弱,具有明显的下冲和较长的10-15 s的重新调整时间。认为这是由于通过不同的涂覆方法制成的阴极层的微观结构的差异。

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