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Catalysis and oxidation of carbon in a hybrid direct carbon fuel cell

机译:混合直接碳燃料电池中碳的催化和氧化

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The hybrid direct carbon fuel cell (HDCFC), combining molten carbonate fuel cell and solid oxide fuel cell technology, is capable of converting solid carbon directly into electrical energy without intermediate reforming. Here, we report the investigation of the HDCFC with yttria stabilized zirconia (YSZ) electrolyte, NiO-YSZ anode and lanthanum strontium manganite (LSM) cathode using the eutectic mixture of 62 mol% Li_2CO_3 and 38 mol% K_2CO_3. An open circuit voltage (OCV) of 0.71 V at 800℃ is recorded without the carbonate which increases to 1.15-1.23 V in the presence of the carbonate at the same temperature. In addition, the cell's OCV is enhanced not only by the thermal history but also by the carbonate, which is in excess of 1.57 V after the high temperature treatment. Electrochemical performance analysis indicates a suitable amount of the carbonate enhanced the carbon oxidation. With 1 mm robust thick electrolyte and commercial carbon, the cell (1.13 cm~2 active area) generates the peak density of 50mWcm~(-2) at 800℃. There are significant losses from electrolyte resistance, which would be overcome by the application of a thinner electrolyte.
机译:混合直接碳燃料电池(HDCFC),结合了熔融碳酸盐燃料电池和固体氧化物燃料电池技术,能够将固体碳直接转化为电能,而无需中间重整。在这里,我们报告了使用62摩尔%Li_2CO_3和38摩尔%K_2CO_3的共晶混合物对氧化钇稳定的氧化锆(YSZ)电解质,NiO-YSZ阳极和锰酸锶锶锰矿(LSM)阴极进行HDCFC的研究。在没有碳酸盐的情况下,记录到800℃的开路电压(OCV)为0.71 V,在相同温度下存在碳酸盐的情况下,开路电压增加到1.15-1.23V。此外,不仅电池的OCV不仅受热历史的影响,而且还受到碳酸盐的影响,碳酸盐在高温处理后超过1.57V。电化学性能分析表明合适量的碳酸盐可增强碳的氧化。在1mm厚的坚固电解质和商用碳的情况下,电池(1.13 cm〜2的有效面积)在800℃时产生的峰值密度为50mWcm〜(-2)。电解质电阻会造成很大的损失,可以通过使用更薄的电解质来克服。

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