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首页> 外文期刊>Kinetics and catalysis >Influence of Method of Introduction of Cu- and Zn-Based Modifiers on the Properties of Chromia-Alumina Catalysts
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Influence of Method of Introduction of Cu- and Zn-Based Modifiers on the Properties of Chromia-Alumina Catalysts

机译:基于Cu和Zn的改性剂引入方法对氧化铝催化剂性能的影响

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摘要

Three methods of introduction of modifiers based on Cu and Zn compounds into the CrO (x) /Al2O3 catalysts for dehydrogenation of light paraffin hydrocarbons are considered: Introduction from sol, introduction using successive impregnation technique and introduction of modifiers by impregnation along with precursor of chromium oxide. The obtained samples are studied by a complex of physical-chemical methods (XRD, UV-Vis spectroscopy, temperature-programmed reduction with hydrogen (TPR-H-2), X-ray fluorescent (XRF) spectrometry, low-temperature N-2 sorption). The catalytic properties of the samples are studied in kinetic mode in isobutane dehydrogenation. Cu- and Zn-modifiers are shown to influence on the peculiarities of reduction of Cr6+ and, hence, specify the state of active surface of CrO (x) /Al2O3 catalysts formed in the reductive reaction medium. Not only do the states of modifiers influence on the initial activity of the catalyst, but also on its activity after oxidative regeneration. Introduction of modifiers by successive impregnation method results in formation of copper and zinc aluminates or defective spinels on the Al2O3 surface. When the active component is introduced, the modified surface of the support promotes formation and stabilization of Cr6+ sites that can undergo reversible reduction-oxidation and provide high activity and selectivity towards formation of isobutylene ( 98%).
机译:考虑了基于Cu和Zn化合物的调节剂引入的三种方法,用于CRO(X)/ Al 2 O 3催化剂用于轻质石蜡烃的脱氢:从溶胶引入,使用连续的浸渍技术引进并通过浸渍引入调节剂以及铬前体氧化物。通过物理化学方法(XRD,UV-Vis光谱,氢气(TPR-H-2),X射线荧光(XRF)光谱,低温N-2的络合物研究了所得样品。低温N-2吸附)。在异丁烷脱氢中的动力学模式中研究了样品的催化性质。显示Cu-和Zn改性剂对Cr6 +的还原的特性产生影响,因此指定在还原反应介质中形成的CRO(X)/ Al2O3催化剂的活性表面的状态。不仅改性剂的状态不仅对催化剂的初始活性影响,而且还对氧化再生后的活性。通过连续的浸渍方法引入改性剂导致铜和锌铝酸盐的形成或在Al 2 O 3表面上形成缺陷尖晶石。当引入活性组分时,载体的改性表面促进了Cr6 +位点的形成和稳定,其可以经过可逆还原氧化,并为非丁烯(& 98%)提供高活性和选择性。

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