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Performance and life of 10-kW molten-carbonate fuel cell stack using Li/K and Li/Na carbonates as the electrolyte

机译:以Li / K和Li / Na碳酸盐为电解质的10 kW熔融碳酸盐燃料电池组的性能和寿命

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摘要

NiO cathode dissolution is a serious problem with molten carbonate fuel cells (MCFC). The target life-time of such cells is 40,000 h, but shorting by NiO cathode dissolution markedly decreases cell performance. NiO cathode dissolution depends oh the composition of the molten carbonate electrolyte. The electrolyte generally comprises a mixture of lithium carbonate and potassium carbonate. Since the solubility of NiO in a mixture of lithium carbonate and sodium carbonate is lower than in lithium and potassium carbonate, it is expected that shorting by NiO cathode dissolution will take longer in a mixture of lithium and sodium. Therefore, a mixture of lithium carbonate and sodium carbonate is a strong candidate electrolyte. A unique 10-kW class stack, which uses a mixture of lithium and potassium carbonate and mixture of lithium and sodium carbonate as the electrolyte, has been developed and tested. The basic performance and life time of both electrolyte cells of the stack are reported. In particular, the change in cathode polarization caused by NiO cathode dissolution is evaluated quantitatively.
机译:NiO阴极溶解是熔融碳酸盐燃料电池(MCFC)的一个严重问题。此类电池的目标使用寿命为40,000小时,但NiO阴极溶解引起的短路会明显降低电池性能。 NiO阴极溶解取决于熔融碳酸盐电解质的组成。电解质通常包含碳酸锂和碳酸钾的混合物。由于NiO在碳酸锂和碳酸钠的混合物中的溶解度比在锂和碳酸钾中的溶解度低,因此预期在锂和钠的混合物中由于NiO阴极溶解而引起的短路将花费更长的时间。因此,碳酸锂和碳酸钠的混合物是强的候选电解质。已经开发并测试了一种独特的10 kW级电池组,该电池组使用锂和碳酸钾的混合物以及锂和碳酸钠的混合物作为电解质。报道了堆叠的两个电解质电池的基本性能和寿命。特别地,定量评价了由NiO阴极溶解引起的阴极极化的变化。

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