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Low Temperature Solid Oxide Fuel Cells with SDC-Carbonate Electrolytes

机译:带有SDC-碳酸盐电解质的低温固体氧化物燃料电池

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Composites consisting of Ce0.8Sm0.2O1.9 (SDC)-carbonate were developed as electrolytes for low temperature solid oxide fuel cells (LTSOFC).The SDC power was prepared by sol-gel method.The carbonates were binary eutectics of (Li/Na)2CO3,(Li/K)2CO3 and (K/Na)2CO3.Conductivity measurements showed that the conductivities were depended on the type of carbonates.Discontinuities were found in the Arrhenius plots for both SDC-(Li/Na)2CO3 and SDC-(Li/K)2CO3.For SDC-(Na/K)2CO3 composite electrolyte,the conductivity increased as temperature rose following one slope.Single cells based on various composites were fabricated by a uniaxial die-press method and tested at 450-600 °C.The results showed all cells exhibited improved performances upon that of pure SDC-based cell.The best power density of 532 mW cm-2 at 600 °C was achieved for LTSOFC using composite of SDC and (Li/Na)2CO3.Conductivity mechanism was also discussed.
机译:开发了由Ce0.8Sm0.2O1.9(SDC)-碳酸盐组成的复合材料作为低温固体氧化物燃料电池(LTSOFC)的电解质,通过溶胶-凝胶法制备了SDC粉末,碳酸盐为(Li / Na)2CO3,(Li / K)2CO3和(K / Na)2CO3。电导率测量表明,电导率取决于碳酸盐类型。在Arrhenius图中发现SDC-(Li / Na)2CO3和SDC-(Li / K)2CO3。对于SDC-(Na / K)2CO3复合电解质,其电导率随温度升高一个斜率而增加。通过单轴模压法制造基于各种复合材料的单电池并在450℃下进行测试-600°C。结果表明,所有电池均表现出优于纯SDC电池的性能。使用SDC和(Li / Na)的复合材料,LTSOFC在600°C时的最佳功率密度为532 mW cm-2还讨论了2CO3的导电机理。

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