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首页> 外文期刊>Journal of Catalysis >Kinetic Investigation of the Effect of Nickel and Fluorine on the HDN of methylcyclohexylamine over WS_2/Al_2O_3 Catalysts
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Kinetic Investigation of the Effect of Nickel and Fluorine on the HDN of methylcyclohexylamine over WS_2/Al_2O_3 Catalysts

机译:WS_2 / Al_2O_3催化剂上镍和氟对甲基环己胺HDN影响的动力学研究

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摘要

The effects of incorporation of nickel and fluorine in WS_2/Al_2O_3 catalysts o nthe kinetics of the hydrodenitrogenation of methylcyclohexylamine were investigated. The catalysts were prepared from ammonium tetrathiotungstate and fully sulfided. The kinetic data were obtained by varying the initial reactant partial pressure and the reaction temperature, and a Langmuir-Hinshelwood kinetic model was used to fit the data. The hydrodenitrogenation of methylcyclohexylamine takes place via two mechanisms, ammonia elimination to methylcyclohexene, and nucleophilic substitution by SH followed by hydrogenolysis of the C-S bond of emthylcyclohexyl mercaptan to methylcyclohexane. The first mechanism has a higher activation energy than the elimination; it increases the activation energy of the reaction and the equilibrium adsorption constant of the reactant on the active site. Fluorination does not change the intrinsic properties of the active sites, but it decreases the number of the active sites.
机译:考察了WS_2 / Al_2O_3催化剂中镍和氟的掺入对甲基环己胺加氢脱氮动力学的影响。由四硫代钨酸铵制备催化剂并完全硫化。通过改变初始反应物分压和反应温度获得动力学数据,并使用Langmuir-Hinshelwood动力学模型进行拟合。甲基环己胺的加氢脱氮是通过两种机理进行的:将氨消除为甲基环己烯,并用SH进行亲核取代,然后将乙基环己基硫醇的C-S键氢解为甲基环己烷。第一种机制比消除机制具有更高的活化能。它增加了反应的活化能和反应物在活性位上的平衡吸附常数。氟化不会改变活性位点的固有性质,但是会减少活性位点的数量。

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