乙苯脱氢过程中FeOx/γ-Al2O3催化剂的结构变化

Q1 Materials Science Catalysis Structure & Reactivity Pub Date : 2016-10-01 DOI:10.1080/2055074X.2016.1234116
M. Mediero-Munoyerro, J. McGregor, L. McMillan, N. Al-yassir, P. Bingham, S. Forder, C. Gorin, S. Al-Khattaf, L. Gladden, P. Midgley
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引用次数: 2

摘要

研究了FeOx/γ-Al2O3催化剂在流态化CREC提升管模拟装置中乙苯脱氢过程中的结构变化。化学和形态的变化被观察到是反应的结果。电子显微镜显示了针状氧化铝结构的形成,明显包裹着氧化铁颗粒。在相对较低的温度下形成这样的结构是出乎意料的,以前没有报道过。此外,x射线衍射和Mössbauer光谱证实了铁的氧化态的减少,从Fe2O3(赤铁矿)到Fe3O4(磁铁矿)。通过电子衍射和晶格条纹分析,在电镜下检测到铁的碳化物Fe3C和fe -Fe2C。在催化剂表面也会发生碳沉积(结焦)。观察到的结构变化可能与材料的催化性能密切相关,特别是与催化剂失活密切相关,从而为未来研究这一工业上重要的反应提供了重要的途径。Fe2O3/Al2O3催化剂在乙苯脱氢过程中发生化学和形态变化,形成Al2O3针状结构,其中含有还原的Fe3O4颗粒。Fe3C也在反应过程中生成。
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Structural changes in FeOx/γ-Al2O3 catalysts during ethylbenzene dehydrogenation
Abstract The structural changes that occur in a FeOx/γ-Al2O3 catalyst during the dehydrogenation of ethylbenzene in a fluidized CREC Riser Simulator have been investigated. Chemical and morphological changes are observed to take place as a result of reaction. Electron microscopy reveals the formation of needle-like alumina structures apparently enclosing iron oxide particles. The formation of such structures at relatively low temperatures is unexpected and has not previously been reported. Additionally, X-ray diffraction and Mössbauer spectroscopy confirmed the reduction of the oxidation state of iron, from Fe2O3 (haematite) to Fe3O4 (magnetite). Iron carbides, Fe3C and ɛ-Fe2C, were detected by electron microscopy through electron diffraction and lattice fringes analysis. Carbon deposition (coking) on the catalyst surface also occurs. The observed structural changes are likely to be closely correlated with the catalytic properties of the materials, in particular with catalyst deactivation, and thereby provide important avenues for future study of this industrially important reaction. Graphical abstract Fe2O3/Al2O3 catalyst undergoes chemical and morphological changes during ethylbenzene dehydrogenation forming Al2O3 needles which appear to contain reduced Fe3O4 particles. Fe3C also forms during reaction.
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Catalysis Structure & Reactivity
Catalysis Structure & Reactivity CHEMISTRY, PHYSICAL-
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