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Direct utilization of lignite coal in a Co–CeO2/YSZ/Ag solid oxide fuel cell

机译:Co–CeO2 / YSZ / Ag固体氧化物燃料电池中褐煤的直接利用

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摘要

The feasibility of employing lignite coal as a fuel in a Direct Carbon Fuel Cell (DCFC) of the type: lignite|Co–CeO2/YSZ/Ag|air is investigated. The impact of several parameters, related to anodic electrode composition (20, 40 and 60 wt.% Co/CeO2), cell temperature (700–800 °C), carrier gas composition (CO2/He mixtures), and total feed flow rate (10–70 cm3/min), was systematically examined. The effect of molten carbonates on DCFC performance was also investigated by employing a eutectic mixture of lithium and potassium carbonates as carbon additives. In the absence of carbonates, the optimum performance (∼10 mW cm−2 at 800 °C), was achieved by employing 20 wt.% Co/CeO2 as anodic electrode and pure CO2 as purging gas. An inferior behavior was demonstrated by utilizing He instead of CO2 atmosphere in anode compartment and by increasing purging gas flow rate. Carbonates infusion into lignite feedstock resulted in a further increase of maximum power density up to 32%. The obtained findings are discussed based also on AC impedance spectroscopy measurements, which revealed the impact of DCFC operating parameters on both ohmic and electrode resistances.
机译:研究了在褐煤| Co–CeO2 / YSZ / Ag | air类型的直接碳燃料电池(DCFC)中使用褐煤作为燃料的可行性。与阳极电极组成(20、40和60 wt。%Co / CeO2),电池温度(700–800°C),载气组成(CO2 / He混合物)和总进料流速有关的几个参数的影响(10-70 cm3 / min),进行了系统检查。还通过采用碳酸锂和碳酸钾的共晶混合物作为碳添加剂来研究熔融碳酸盐对DCFC性能的影响。在不存在碳酸盐的情况下,通过使用20 wt。%Co / CeO2作为阳极电极和使用纯CO2作为吹扫气体,可以获得最佳性能(在800°C时约为10 mW cm-2)。通过在阳极室中利用He代替CO2气氛并提高吹扫气体流速来证明其性能较差。碳酸盐注入褐煤原料导致最大功率密度进一步提高,最高达到32%。还基于交流阻抗谱测量对获得的发现进行了讨论,交流测量揭示了DCFC操作参数对欧姆电阻和电极电阻的影响。

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