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Mechanistic Kinetic Models for n-Heptane Reforming on Platinum/Alumina Catalyst

机译:铂/氧化铝催化剂上正庚烷重整的力学动力学模型

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The kinetics of the reforming of n-heptane on a platinum/alumina catalyst has been studied in a pulse microcatalytic reactor at a total pressure of 391.8 kPa over a relatively wide temperature range of 420 deg C-500 deg C. The differential and integral methods were used for the kinetic analyses of the reforming reaction. Twenty-nine reaction rate equations of the Langmuir-Hinselwood-Hougen-Watson type, based on molecular and atomic adsorption of hydrogen, were developed. Parameter estimates for the n-heptane reforming reactions were obtained by application of the Nelder-Mead simplex optimization technique to the predicted and observed conversion/production rates of the reaction components. Discrimination among rival kinetic models was based upon physicochemical criteria, analysis of the residuals, and statistical and thermodynamic tests. The rate-determining step was found to be the surface reaction of adsorbed iso-heptane to adsorbed methylcyclohexane with dissociative adsorption of hydrogen on the catalyst surface during dehydrocyclization of iso-heptane to methylcyclohexane. Hence, the surface reaction on the metallic function is rate-determining for the n-heptane reforming on the Pt/Al_2O_3 catalyst.
机译:在脉冲微催化反应器中,在420℃至500℃的较宽温度范围内,以总压力391.8 kPa研究了正庚烷在铂/氧化铝催化剂上的重整动力学。将其用于重整反应的动力学分析。基于氢的分子和原子吸附,建立了Langmuir-Hinselwood-Hougen-Watson型的29个反应速率方程。正庚烷重整反应的参数估计值是通过将Nelder-Mead单纯形优化技术应用于预测和观察到的反应组分的转化率/产率而获得的。竞争对手动力学模型之间的区别基于理化标准,残差分析以及统计和热力学测试。决定速率的步骤是在异庚烷脱氢环化为甲基环己烷的过程中,吸附的异庚烷与吸附的甲基环己烷的表面反应,以及氢在催化剂表面的离解吸附。因此,对于Pt / Al_2O_3催化剂上的正庚烷重整,金属功能的表面反应决定了速率。

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