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首页> 外文期刊>Catalysis science & technology >Oxidative dehydrogenation of ethylbenzene to styrene over the CoFe2O4-MCM-41 catalyst: preferential adsorption on the O2-Fe3+O2- sites located at octahedral positions
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Oxidative dehydrogenation of ethylbenzene to styrene over the CoFe2O4-MCM-41 catalyst: preferential adsorption on the O2-Fe3+O2- sites located at octahedral positions

机译:乙苯氧化脱氢的反应苯乙烯CoFe2O4-MCM-41催化剂:选择性吸附O2-Fe3 + O2 -网站位于八面体位置

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摘要

The present study describes the catalytic performance of cobalt ferrite supported on MCM-41 for the oxidative dehydrogenation of ethylbenzene. The catalytic activity of cobalt ferrite was compared with that of the traditional hematite based catalyst. A mechanism is described indicating the role of the O2--Fe3+-O2- and O2--Co2+-O2- acid-base sites present in the tetrahedral and octahedral positions of the cobalt ferrite structure. The solids were characterized by X-ray diffraction (XRD), Raman spectroscopy (RS), Mossbauer spectroscopy (MS), X-ray photoelectron spectroscopy (XPS), vibrating-sample magnetometry (VSM), temperature-programmed reduction (H-2-TPR), chemical adsorption of NO and pyridine followed by infrared analysis, temperature programmed desorption of CO2 (TPD), N-2 physisorption and transmission electronic microscopy (TEM). The catalytic tests were performed in a fixed bed reactor using a saturator containing ethylbenzene. The XRD, RS, MS and VSM results confirmed the formation of cobalt ferrite, which was classified as partially inverted ferrite. The low-angle XRD, N-2 isotherms and TEM images show the formation of the mesoporous MCM-41 support with a high surface area. The catalytic tests confirmed that the cobalt ferrite is more active and stable than the traditional hematite catalyst. The catalytic cycle for ethylbenzene dehydrogenation occurs preferentially in the O2--Fe3+-O2- octahedral sites compared to the O2--Co2+-O2- sites. A theoretical approach using density functional theory revealed a higher acidity of iron sites compared to cobalt ones on the surface of the partially inverted spinel. The adsorption of ethylbenzene takes place preferentially in the outermost FeOx (x > 4) sites (Lewis acid) and the dehydrogenation reaction occurs predominantly in the oxygens bound to iron (Lewis base) according to the complementary electrostatic potential surface approach.
机译:本研究描述了催化MCM-41钴铁氧体的性能支持的氧化脱氢乙苯。相比传统的铁氧体基于赤铁矿的催化剂。指示O2的角色——Fe3 + - 02 -和O2, Co2 + - 02 -酸碱网站中四面体和八面体的位置钴铁氧体的结构。以x射线衍射(XRD),拉曼光谱学(RS),穆斯堡尔谱(女士),x射线光电子能谱(XPS),振动探针测磁学(VSM),程序升温还原(H-2-TPR),没有和吡啶的化学吸附通过红外分析,温度设定解吸二氧化碳(兼总经理)、n -物理吸附透射电子显微镜(TEM)。在固定床催化进行了测试使用饱和器包含反应堆乙苯。证实了钴铁氧体的形成,被归类为部分倒铁氧体。低角XRD、n -等温线和TEM图像显示介孔的形成MCM-41支持具有高表面积。证实了钴铁氧体更活跃比传统的赤铁矿和稳定催化剂。脱氢发生优先O2 - Fe3 + - 02 -八面体网站相比O2, Co2 + - 02 -网站。密度泛函理论揭示了更高酸度比的钴铁网站表面的部分倒尖晶石。乙苯发生吸附优先在最外层FeOx (x > 4)网站(路易斯酸)和脱氢反应主要发生在氧绑定到铁(路易斯碱)的根据互补表面静电势的方法。

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