Thermophysical Properties of Materials for Solid Oxide Fuel Cells (SOFC)

N. Sakai
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引用次数: 1

Abstract

The data of heat capacity, thermal conductivity, and thermal expansion behavior for materials in solid oxide fuel cells (SOFCs) are reviewed. Most of the SOFC materials are complex metal oxides and their thermal conductivities are generally low, that causes a large temperature distribution during the operation. Since the SOFC consists of metal oxides and composites, a good thermal expansion matching is the most important point in order to fabricate durable cells and stacks. The electrolytes and interconnects are exposed in a large gradient of oxygen partial pressure at a high temperature, and isothermal expansion is observed for rare earth substituted ceria and alkaline earth substituted lanthanum chromites. Although the isothermal expansion in lanthanum chromites can be alleviated by substituting the transition metals, it can not in rare earth substituted ceria. 解 説
固体氧化物燃料电池(SOFC)材料的热物理性质
综述了固体氧化物燃料电池(SOFCs)材料的热容、导热系数和热膨胀性能的相关数据。SOFC材料大多为复杂的金属氧化物,其导热系数普遍较低,导致在操作过程中温度分布较大。由于SOFC由金属氧化物和复合材料组成,因此为了制造耐用的电池和电池组,良好的热膨胀匹配是最重要的一点。在较大的氧分压梯度下,电解液和互连体在高温下暴露,稀土取代的氧化铈和碱土取代的镧铬铁矿均观察到等温膨胀。虽然用过渡金属取代镧铬铁矿可以缓解等温膨胀,但用稀土取代铈却不能缓解等温膨胀。解 説
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