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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >On the effects of confinement within a catalyst consisting of platinum embedded within nanoporous carbon for the hydrogenation of alkenes
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On the effects of confinement within a catalyst consisting of platinum embedded within nanoporous carbon for the hydrogenation of alkenes

机译:关于封闭在纳米孔碳中的铂组成的催化剂中用于烯烃加氢的限制作用

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摘要

In heterogeneous catalysis, pore size exerts an influence on reaction pathway, selectivity, equilibrium and adsorption constants. This effect can in principle cause noticeable changes in selectivity. Here, we present an analysis of a diffusion-reaction process in the pores of a catalyst comprised of platinum nanoparticles embedded within a molecular sieving carbon. When the alkenes are hydrogenated over this catalyst, the reaction takes place within the ultramicropores of the carbon. Experimental data for the liquid phase hydrogenation of different alkenes over platinum supported on the carbon versus platinum embedded urithin the same carbon were collected. From these data kinetic parameters and diffusion coefficients for reactions were evaluated. The forward rate constant for 2-methyl-1-pentene hydrogenation was found to be almost one order of magnitude larger within the embedded platinum catalyst versus the supported platinum catalyst. The variation in pore size and reactant molecule dimension, were also found to affect the adsorption equilibrium constants and diffusion coefficients. For 2-methyl-1-pentene molecule with the highest steric hindrance, K increased to 500 g/mol in embedded catalyst compared to 100 g/mol on supported catalyst. At the same time the diffusion coefficient for 2-methyl-l-pentene was one order of magnitude smaller than 1-hexene.
机译:在非均相催化中,孔径对反应路径,选择性,平衡和吸附常数有影响。原则上,该效应可引起选择性的显着变化。在这里,我们对由嵌入分子筛碳中的铂纳米颗粒组成的催化剂的孔中的扩散反应过程进行分析。当烯烃在该催化剂上氢化时,反应在碳的超微孔内发生。收集了在碳上负载的铂与在相同碳上的铂嵌入尿素相比,不同烯烃在液相上进行氢化反应的实验数据。从这些数据评估反应的动力学参数和扩散系数。发现嵌入的铂催化剂中2-甲基-1-戊烯氢化的正向速率常数比负载的铂催化剂大约一个数量级。还发现孔径和反应物分子尺寸的变化会影响吸附平衡常数和扩散系数。对于具有最高空间位阻的2-甲基-1-戊烯分子,嵌入催化剂中的K增加到500 g / mol,而负载催化剂上的K增加到500 g / mol。同时,2-甲基-1-戊烯的扩散系数比1-己烯小一个数量级。

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