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A Study of Carbon Formation and Prevention in Hydrocarbon-Fueled SOFC

机译:烃类燃料燃料电池中碳的形成与防止的研究

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摘要

The formation and removal of the carbonaceous deposits formed by n-butane and liquid hydrocarbons, such as n-decane and proprietary light and heavy naphthas, between 973 and 1073 K on YSZ and ceria-YSZ, has been studied to determine conditions for stable operation of direct-utilization SOFC. First, it is shown that deactivation of SOFC with Cu-ceria-YSZ anodes operating on undiluted n-decane, a mixture of 80% n-decane and 20% toluene, or light naphtha at temperatures above 973 K is due to filling of the pores with polyaromatic compounds formed by gas-phase, free-radical reactions. Formation of these compounds occurs at a negligible rate below 973 K but increases rapidly above this temperature. The rate of formation also depends on the residence time of the fuel in the anode compartment. Because steam does not participate in the gas-phase reactions, carbonaceous deposits could form even at a H2O:C ratio of 1.5, a value greater than the stability threshold predicted by thermodynamic calculations. Temperature-programmed-oxidation (TPO) measurements with 20% H2O in He demonstrated that carbon deposits formed in pure YSZ were unreactive below 1073 K, while deposits formed on ceria-YSZ could be removed at temperatures as low as 923 K. Based on these results, we discuss strategies for avoiding carbon formation during the operation of direct-utilization anodes on oil-based liquid fuels.
机译:在YSZ和Ceria-YSZ上研究了正丁烷和液态烃(例如正癸烷和专有轻质和重质石脑油)在973和1073 K之间形成和清除的碳质沉积物,以确定稳定运行的条件直接利用SOFC。首先,表明在高于973 K的温度下使用未稀释的正癸烷,80%正癸烷和20%甲苯的混合物或轻石脑油操作的Cu-Ceria-YSZ阳极使SOFC失活。气相,自由基反应形成的带有多芳族化合物的微孔。这些化合物的形成在973 K以下以可忽略的速率发生,但在该温度以上迅速增加。形成速率还取决于燃料在阳极室中的停留时间。由于蒸汽不参与气相反应,因此即使H2O:C比为1.5,也可能形成碳质沉积物,该值大于热力学计算预测的稳定性阈值。用He中的20%H2O进行的程序升温氧化(TPO)测量表明,纯YSZ中形成的碳沉积物在1073 K以下不会发生反应,而氧化铈-YSZ中形成的沉积物可以在低至923 K的温度下去除。结果,我们讨论了在油基液体燃料上直接利用阳极操作过程中避免碳形成的策略。

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