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Direct evidence of active surface reconstruction during oxidative dehydrogenation of propane over VMgO catalyst

机译:VMgO催化剂上丙烷氧化脱氢过程中活性表面重建的直接证据

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This paper presents a thorough investigation of an optimised VMgO catalyst (14 wt% V) for the oxidative dehydrogenation of propane, carried out in order to elucidate the nature and behaviour of the active surface. The catalyst morphology and the surface composition are studied by means of HREM, XPS, UV-vis, XRD, and in-situ electrical conductivity techniques, as a function of the gaseous environments of the catalyst. The active surface is shown to be essentially a monolayer of amorphous VO43- units scattered over the magnesia as isolated and polymeric species. These surface vanadia units are found to stabilise an unusual polar (111) orientation of MgO up to temperatures of 800 degrees C. A direct and outstanding evidence of a totally reversible phenomenon of order/disorder restructuration of this V overlayer is provided in conjunction with the redox state of the surface depending on the properties of the surrounding atmosphere (reductive or oxidative). These fast surface phenomena are assumed to determine the elementary steps of propane activation within the overall ODHP process. (C) 1998 Academic Press. [References: 20]
机译:本文对用于丙烷氧化脱氢的最佳VMgO催化剂(14 wt%V)进行了全面研究,以阐明活性表面的性质和行为。借助于HREM,XPS,UV-vis,XRD和原位电导率技术,根据催化剂的气体环境研究了催化剂的形态和表面组成。活性表面显示为基本上无定形VO43-单元的单层,其分散在氧化镁上,是分离的和聚合的物质。发现这些表面钒离子单元在高达800摄氏度的温度下都能稳定MgO的异常极性(111)取向。结合该V覆盖层,可提供有关该V层完全有序/无序重构的完全可逆现象的直接且出色的证据。表面的氧化还原状态取决于周围大气的性质(还原性或氧化性)。这些快速的表面现象被认为是确定整个ODHP过程中丙烷活化的基本步骤。 (C)1998年学术出版社。 [参考:20]

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