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Conversion of Lower Hydrocarbons in the Presence of Carbon Dioxide: The Theoretic Analysis and Catalytic Tests over Active Carbon Supported Vanadium Oxide

机译:二氧化碳存在下低级烃的转化:活性炭负载氧化钒的理论分析和催化试验

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摘要

The results of thermodynamic analysis of methane oxidative coupling and dehydrogenation of C2–C4 hydrocarbons in the presence of carbon dioxide were compared to the corresponding results in an inert gas atmosphere. Moreover, conversion of alkanes in some undesirable side reactions, such as decomposition of alkanes to the synthesis gas or to carbon oxide and water, as well as the gasification of coke by carbon dioxide in the Boudouard reaction, were investigated. Finally, the results of the theoretical calculations were compared with the experimental data obtained over VOx/Cact catalyst. The results are discussed in relation to the acid–base properties of the catalyst surface and the atomic charge on the hydrogen most susceptible to abstraction (i.e., the weakest C–H bond in hydrocarbons). Thus, the changes of the catalytic performance in the presence and absence of carbon dioxide are explained.
机译:将在二氧化碳存在下甲烷氧化偶联和C2–C4 烃脱氢的热力学分析结果与在惰性气体气氛中的相应结果进行了比较。此外,还研究了烷烃在某些不良副反应中的转化,例如烷烃分解成合成气或氧化碳和水,以及在Boudouard反应中通过二氧化碳将焦炭气化。最后,将理论计算结果与在VOx / Cact 催化剂上获得的实验数据进行了比较。讨论的结果与催化剂表面的酸碱性质以及最容易被提取的氢原子上的原子电荷有关(即,碳氢化合物中最弱的CH键)。因此,解释了在存在和不存在二氧化碳的情况下催化性能的变化。

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