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首页> 外文期刊>Catalysis science & technology >Elucidating the effects of individual components in KxMnOy/SiO2 and water on selectivity enhancement in the oxidative coupling of methane
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Elucidating the effects of individual components in KxMnOy/SiO2 and water on selectivity enhancement in the oxidative coupling of methane

机译:阐明单个组件的影响在选择性KxMnOy /二氧化硅和水增强在甲烷氧化偶联

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摘要

To date, a great number of various materials have been tested for the oxidative coupling of methane (OCM). On the basis of previous statistical analysis of OCM-related literature data, we developed novel catalysts based on K2MnO4 or KMnO4 supported on SiO2 showing selectivity to C-2-hydrocarbons (C2H4 and C2H6) up to 68 or 66%. The analysis of catalysts containing the single components (Mn/SiO2, K2O/SiO2 or SiO2) demonstrates that the co-existence of K and Mn is essential for achieving high selectivity to the desired products. The selectivity can be additionally improved when the OCM reaction is performed in the presence of water. The positive effect of water is attributed to the suppressed direct oxidation of CH4 to CO2. Water also enhances the rates of methane conversion into C-2-hydrocarbons and CO. Besides, the effects of water are more pronounced for samples based on crystalline SiO2 rather than amorphous SiO2. Transient experiments with isotopically labelled oxygen suggest that the accelerating effect should be of heterogenous nature. As the positive influence of water on the selective methane oxidation to C-2-hydrocarbons has been established over different catalysts, it may be advantageous to consider it when developing novel materials for the OCM reaction and even for other oxidation reactions.
机译:到目前为止,大量的各种各样的材料检测甲烷的氧化耦合(OCM)。OCM-related文献的分析数据,我们基于K2MnO4或开发新型催化剂KMnO4支持二氧化硅显示选择性C-2-hydrocarbons (C2H4和C2H6) 68或66%。包含单一催化剂的分析组件(Mn /二氧化矽,K2O /二氧化硅或二氧化硅)表明,K和Mn的共存基本实现高选择性所需的产品。此外改善OCM反应时在水的存在。水是由于抑制的效果直接氧化甲烷的二氧化碳。提高利率的甲烷转化C-2-hydrocarbons和CO。此外,的影响水是样本的基础上更加明显结晶二氧化硅而不是无定形二氧化硅。瞬态实验isotopically标签氧表明加速的效果应的异构性。水在选择性甲烷的影响C-2-hydrocarbons被氧化建立在不同的催化剂,它可能是有利的考虑它在开发小说OCM反应甚至其他材料氧化反应。

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