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Developing fuel map to predict the effect of fuel composition on the maximum voltage of solid oxide fuel cells

机译:绘制燃料图以预测燃料成分对固体氧化物燃料电池最大电压的影响

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摘要

A thermodynamic model is developed to determine the fuels that would yield an identical maximum cell voltage (MCV) for solid oxide fuel cells (SOFCs) at a given operating condition. These fuels make a continuous curve in the ternary coordinate system. A fuel map is established by developing the continuous fuel curves for different MCVs at the same operating condition and representing them in the carbon-hydrogen-oxygen (C-H-O) ternary diagram. Using the fuel map, the effect of the composition of a fuel containing carbon, hydrogen, oxygen, and inert gas atoms on the MCV of SOFCs can be easily studied. In addition to the effect of the fuel composition, the graphical representation of fuel maps can be applied to study the effect of the fuel processors on the MCV of SOFCs. As a general result, among fuels that can be directly utilized in SOFCs, at the same temperature and pressure, the one located at the intersection of the H-C axis and the carbon deposition boundary (CDB) curve in the C-H-0 ternary diagram, provides the highest MCV for SOFCs. The results also show that for the fuels that cannot be directly utilized in SOFC, the steam reforming fuel processor always yields a higher MCV than the autothermal reforming or the partial oxidation fuel processors at the same inlet fuel temperature.
机译:建立了热力学模型,以确定在给定的工作条件下,固体氧化物燃料电池(SOFC)产生的最大电池电压(MCV)相同的燃料。这些燃料在三元坐标系中形成连续曲线。通过绘制相同操作​​条件下不同MCV的连续燃料曲线并在碳氢氧(C-H-O)三元图中表示它们,来建立燃料图。使用燃料图,可以轻松研究含碳,氢,氧和惰性气体原子的燃料组成对SOFC的MCV的影响。除了燃料成分的影响外,可以使用燃料图的图形表示来研究燃料处理器对SOFC的MCV的影响。结果,在可直接用于SOFC的燃料中,在相同的温度和压力下,位于CH-0三元图中HC轴与碳沉积边界(CDB)曲线相交处的燃料提供了SOFC的最高MCV。结果还表明,对于不能在SOFC中直接使用的燃料,在相同的入口燃料温度下,蒸汽重整燃料处理器始终比自热重整燃料或部分氧化燃料处理器产生更高的MCV。

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