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Mechanistic approach of the oxidative dehydrogenation of propane over VMgO catalysts by in situ spectroscopic and kinetic techniques

机译:原位光谱和动力学技术在VMgO催化剂上丙烷氧化脱氢的机理研究

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The mechanism of the oxidative dehydrogenation of propane (ODHP) was investigated over a series of thoroughly characterized VMgO catalysts by means of kinetic experiments combined with in situ techniques such as DRIFT and XPS spectroscopies, electrical conductivity and isotopic transient kinetics. All ODHP products were shown to be essentially primary. From the description of the active surface under reaction conditions, a unique active site was assumed to include surface V~(5+) ions, lattice oxygen ions and anionic vacancies. A detailed mechanism was tentatively proposed which accounted for the main observed kinetic trends. Both the weak dependence of selectivity and the marked dependence of intrinsic activity on catalyst structure and composition within a large range of vanadium content were also discussed on the basis of the proposed mechanism.
机译:通过动力学实验结合原位技术(如DRIFT和XPS光谱学,电导率和同位素瞬态动力学),研究了在一系列经过充分表征的VMgO催化剂上丙烷氧化脱氢(ODHP)的机理。显示所有ODHP产品基本上都是主要产品。根据反应条件下活性表面的描述,假定一个独特的活性位点包括表面V〜(5+)离子,晶格氧离子和阴离子空位。尝试性地提出了详细的机制,该机制解释了主要观察到的动力学趋势。在提出的机理的基础上,还讨论了选择性的弱依赖性和内在活性对催化剂结构和组成在钒含量范围内的显着依赖性。

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