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Kinetic study of carbon monoxide methanation over mesoporous Ni-Mo catalyst prepared by a hydrothermal method

机译:通过水热法制备介孔Ni-Mo催化剂的一氧化碳甲烷化的动力学研究

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摘要

The kinetics of carbon monoxide methanation over Ni-Mo-SiO2 catalyst were studied. The model was developed based on catalyst tests carried out in a fixed-bed reactor at a reaction temperature varied from 300 CC to 450 degrees C under a pressure from 0.1 to 1.5 MPa with a weight hourly space velocity of 60,000 mL h(-1) g(-1). An orthogonal design method was adopted to select test points with temperature, pressure, and feed compositions as factors. Based on the experimental observations, a Langmuir-Hinshelwood equation kinetic model was formulated and its parameters were estimated by fitting the experimental data implemented in MATLAB. The activation energy for the formation of CH4 was 45.4 kj mol(-1) and comparing the experimental and model-predicted data showed that the proposed model gives a reasonable fit with an average absolute relative deviation of +/- 9.8%.
机译:研究了Ni-Mo-SiO2催化剂上的一氧化碳甲烷化的动力学。 该模型基于在固定床反应器中在反应温度下在0.1至1.5MPa的压力下在500cc至450c的反应温度下在0.1至1.5MPa中进行的催化剂试验进行开发,其重量小时间速度为60,000ml H(-1) g(-1)。 采用正交设计方法选择具有温度,压力和饲料组合物作为因素的测试点。 基于实验观察,配制了Langmuir-hinshelwood公式动力学模型,通过拟合在Matlab中实施的实验数据来估算其参数。 用于形成CH4的激活能量为45.4kJ摩尔(-1)并比较实验和模型预测数据显示,所提出的模型提供合理的拟合,平均绝对相对偏差为+/- 9.8%。

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