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首页> 外文期刊>Topics in Catalysis >Plasma-Assisted Non-Oxidative Conversion of Methane over Mo/HZSM-5 Catalyst in DBD Reactor
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Plasma-Assisted Non-Oxidative Conversion of Methane over Mo/HZSM-5 Catalyst in DBD Reactor

机译:在DBD反应器中的甲烷上甲烷的等离子体辅助非氧化转化率

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Methane utilization has been recognized as a challenging research topic because methane is very stable with strong C-H bond. Many efforts have been devoted to find an effective method for the methane activation. In this work, we examined the feasibility of decreasing the temperature of a non-oxidative methane dehydroaromatization by using DBD plasma-catalyst hybrid system. Mo/HZSM-5 catalyst was prepared and then it was used for the DBD plasma-assisted methane dehydroaromatization reaction. When the DBD plasma was applied to the Mo/HZSM-5 catalytic reactor, methane was converted at much lower temperatures than the conventional methane dehydroaromatization process. It was also confirmed that benzene selectivity could be improved by enhancing the interaction between plasma and catalyst. These results imply that the non-oxidative methane dehydroaromatization could occur effectively at milder conditions than the conventional process by using the optimized DBD plasma-catalyst hybrid system. Moreover, it was observed that the catalyst deactivation was effectively prevented when H-2 gas was mixed with the reaction feed.
机译:甲烷利用已被认为是一个具有挑战性的研究主题,因为甲烷具有强烈的C-H键非常稳定。已经致力于寻找有效的甲烷活化方法。在这项工作中,我们研究了通过使用DBD血浆催化剂杂交系统降低了降低非氧化甲烷脱氢化温度的可行性。制备Mo / HzSM-5催化剂,然后用于DBD等离子体辅助甲烷脱氢反应。当将DBD等离子体施加到Mo / HzSM-5催化反应器上时,在比常规甲烷脱氢致氢化过程中均多温度转化甲烷。还证实可以通过增强血浆和催化剂之间的相互作用来提高苯选择性。这些结果意味着通过使用优化的DBD等离子体催化剂混合系统,非氧化甲烷脱氢致氢致原得可以有效地发生比常规方法更升高。此外,观察到当H-2气体与反应饲料混合时,有效地防止了催化剂去激活。

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