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Methane Steam Reforming over a Ni/NiAl2O4 Model Catalyst-Kinetics

机译:Ni / Nial2O4模型催化剂 - 动力学上的甲烷蒸汽重整

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The steam reforming reaction of methane to synthesis gas (CO and H-2) was investigated in a very broad steam-to-carbon (S/C) ratio range (0.2-7.1) over a Ni/NiAl2O4 catalyst at 843, 858, and 873 K. The dataset includes 179 data points at each temperature giving a detailed insight in the gradual change of kinetic orders in both methane and steam with changing S/C ratios as well as with total reactant partial pressures at differential conversion levels. At low S/C ratios, steam dominates the kinetics with high kinetic orders (low for methane) and vice versa for methane at high S/C ratios. The extent of the water gas shift reaction was assessed by (CO2)-C-13 co-feed experiments and thermodynamic modelling and found to be not in equilibrium. A change in the kinetic isotope effect (i.e., inverse and normal), as well as the apparent activation energy, was observed depending on the applied S/C ratios. The experimental data were satisfactorily described by a Langmuir-Hinshelwood expression.
机译:在843,858的Ni / Nial 2O4催化剂上,在非常宽的蒸汽 - 碳(S / C)比(0.2-7.1)中,研究甲烷与合成气体(CO和H-2)的蒸汽重整反应在843,858中, 该数据集包括在每个温度下的179个数据点,详细介绍甲烷和蒸汽中动力学订单的逐渐变化,改变S / C比率以及差异转化水平的总反应物部分压力。 在低S / C比率,Steam主导具有高动力学订单(甲烷低)的动力学,反之亦然,高S / C比率。 通过(CO 2)-C-13共馈实验和热力学建模评估水煤气变换反应的程度,发现不均衡。 根据所施加的S / C比率,观察到动力学同位素效应(即逆和正常)以及表观活化能量的变化。 Langmuir-Hinshelwood表达令人满意地描述了实验数据。

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