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First principles micro-kinetic model of catalytic non-oxidative dehydrogenation of ethane over close-packed metallic facets

机译:近填充金属刻面催化非氧化脱氢的第一原理微动模型

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Catalytic dehydrogenation of light alkanes may offer more efficient routes to selectively producing light olefins, which are some of the most important chemical building blocks in the industry, in terms of scale. We present a descriptor based micro-kinetic model of the trends in selectivity and activity of non-oxidative dehydrogenation of ethane over close-packed metal facets and through varied reaction conditions. Our model predicts and explains the experimentally observed promotion effect on turnover rate from co-feeding hydrogen as an effect of the shifting equilibria in steady state. At low conversion reaction conditions over Pt, the path to ethene goes through ethane dehydrogenation to ethyl, CH3CH2*, then to ethene while the non-selective pathway to methane and deeply dehydrogenated species is predicted to go through dehydrogenation via CH3CH*. This implies that the desorption step of ethene is not the limiting step for selectivity and that geometric effects that stabilize CH2CH2* compared to CH3CH* are desirable properties of a better catalyst. Removing reactive bridge and 3-fold sites facilitates this, which may be achievable by sufficient concentrations of tin in platinum. The included model code furthermore provides a base for easy tuning and for expanding the study to other thermodynamic conditions, other facets, alloys or the reaction network to longer hydrocarbons or to oxidative pathways. (C) 2019 Published by Elsevier Inc.
机译:轻质烷烃的催化脱氢可提供更有效的路线,以选择性地生产光烯烃,这是行业中最重要的化学建筑块,在规模方面。我们介绍基于描述符的微动模型的选择性和活性的趋势,在近填充金属刻面和通过各种反应条件下进行乙烷的非氧化脱氢液的选择性和活性。我们的模型预测并解释了对氢气与稳态移位平衡的影响的实验观察到的促进效应。在Pt的低转化反应条件下,乙烯的路径通过乙烷脱氢至乙基,CH 3 CH 2 *,然后对乙烯进行乙烯,而预测甲烷和深疏远的物质的非选择性途径预测通过CH 3 CH 3 CH 3 CH 3脱氢化。这意味着乙烯的解吸步骤不是选择性的限制步骤,并且与CH3CH *稳定CH2CH2 *的几何效果是更好的催化剂的理想性质。去除反应桥和3折位点有助于这一点,这可以通过铂中足够浓度的锡浓度来实现。此外的模型代码还提供了一种碱基,用于易于调整,并且为了扩展到其他热力学条件,其他小平面,合金或反应网络的研究进入更长的烃或氧化途径。 (c)2019由elsevier公司出版

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