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首页> 外文期刊>Chemical engineering journal >Magnetic field-enhanced catalytic CO2 hydrogenation and selective conversion to light hydrocarbons over Fe/MCM-41 catalysts
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Magnetic field-enhanced catalytic CO2 hydrogenation and selective conversion to light hydrocarbons over Fe/MCM-41 catalysts

机译:Fe / MCM-41催化剂上磁场增强的催化CO2加氢和选择性转化为轻烃

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摘要

Based on green and efficient utilization concepts, an external magnetic field is applied with an attempt to improve the catalytic performance in CO2 hydrogenation reaction. In this research, effects of magnetic field orientation and magnetic flux density on activity and selectivity of xFe/MCM-41 catalysts with ferro/ferrimagnetic property were investigated. With external magnetic field, especially in north-to south (N-S) direction, CO2 conversions were significantly improved by 1.5-1.8 times; meanwhile, the activation energy was decreased by 1.12-1.15 times, compared to those of without magnetic field. Upon changing the magnetic flux density, CO2 conversion increased with increasing the magnetic flux density followed the order of 27.7 mT > 25.1 mT > 20.8 mT. Furthermore, higher selectivities to C-2-C-3 hydrocarbons (2.5-5.3 times), and CH3OH (1.6 times) were observed at 180-200 degrees C and 220 degrees C, respectively. Among all the conditions with magnetic field, the highest CO2 conversion and selectivity to CH3OH and C-2-C-3 hydrocarbons were obtained at -27.7 mT in N-S direction. These outstanding catalytic activities could be attributed to the fact that magnetic field help facilitate the reactant adsorption and surface reaction over the magnetized Fe catalysts, leading to the decrease of apparent activation energy, and also the increase of selectivities to hydrocarbons and CH3OH. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于绿色和有效利用的概念,施加外部磁场以试图改善CO2加氢反应中的催化性能。在这项研究中,研究了磁场取向和磁通密度对具有铁/亚铁磁性的xFe / MCM-41催化剂的活性和选择性的影响。在外部磁场的作用下,尤其是从北向南(N-S)方向,CO2转化率显着提高了1.5-1.8倍;同时,与没有磁场的情况相比,其活化能降低了1.12-1.15倍。改变磁通密度后,CO2转化率随磁通密度的增加而增加,依次为27.7 mT> 25.1 mT> 20.8 mT。此外,在180-200℃和220℃下分别观察到对C-2-C-3烃的较高选择性(2.5-5.3倍)和CH 3 OH(1.6倍)。在所有带磁场的条件下,在N-S方向上-27.7 mT时,可获得最高的CO2转化率和对CH3OH和C-2-C-3烃的选择性。这些出色的催化活性可归因于以下事实:磁场有助于在磁化的Fe催化剂上促进反应物吸附和表面反应,从而导致表观活化能降低,以及对烃和CH3OH的选择性增加。 (C)2016 Elsevier B.V.保留所有权利。

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