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首页> 外文期刊>Journal of Molecular Structure >Direct versus hydrogen-assisted dissociation of CO on iron surfaces: Kinetic Monte Carlo and microkinetic modeling
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Direct versus hydrogen-assisted dissociation of CO on iron surfaces: Kinetic Monte Carlo and microkinetic modeling

机译:直接与铁表面上CO的氢辅助解离:动力学蒙特卡罗和微蓄电图

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Microkinetic modelling in conjunction with Kinetic Monte Carlo (KMC) simulations were employed to study the direct versus hydrogen-assisted dissociation of CO on iron surfaces. For the activation barriers of the reactions, DFT documentation was considered. The production of C, O, HCO, COH, CH, and OH was assessed to compare the behaviour of CO(sic)C + O, H + CO(sic)CH + O and H + CO(sic)C + OH reactions at identical conditions of pressure and temperature. It was observed that, for the studied temperature conditions 300-450 K, the reactions coexist to 300-370 K, and present selective predominance depending of the temperature range, being the direct dissociation of CO the route with the highest conversion at temperatures above 450 K, and hydrogen-assisted the main reaction between 350 and 400 K. (C) 2019 Elsevier B.V. All rights reserved.
机译:使用与动力学蒙特卡罗(KMC)模拟结合的微蓄力建模研究了CO在铁表面上的直接与氢辅助解离。 对于反应的激活障碍,考虑了DFT文件。 评估C,O,HCO,COH,CH和OH的生产,比较CO(SiC)C + O,H + CO(SiC)CH + O和H + CO(SiC)C + OH反应的行为 在相同的压力和温度条件下。 观察到,对于所研究的温度条件300-450k,反应将其共存至300-370 k,并根据温度范围提取选择性优势,是在450高于450以上的温度下转化的途径的直接解离。 K,氢气辅助350和400 K.(c)2019年Elsevier BV的主要反应保留。

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