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Plasma-enhanced catalytic activation of CO2 in a modified gliding arc reactor

机译:改性滑行电弧反应器中CO2的血浆增强催化活化

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摘要

For the first time, this paper demonstrates a synergistic effect from the combination of a gliding arc discharge plasma with a photocatalyst TiO2 for CO2 dissociation. The effects of adding a tray downstream the discharge and the combination of the catalyst with plasma have been investigated. Two different combination modes of plasma catalysis, i.e., in-plasma catalysis and post-plasma catalysis, have been evaluated with the emphasis on the analysis of potential mechanisms. The results show that modifying the gliding arc reactor by the addition of a tray can enhance the fraction of gas treated by plasma, thus improving the reaction performance. An exceptional synergistic effect of combining the gliding arc discharge with TiO2 for CO2 activation forms in the in-plasma catalysis mode. The presence of TiO2 significantly enhances the CO2 conversion by 138% and the energy efficiency by 133% at a flow rate of 2 L/min. The plasma activation effect, which produces energetic electrons that can create the electron-hole pairs on the catalyst surface, is believed to be the major contributor to the generation of the plasma catalysis synergy. This mechanism has been further evidenced by the negligible influence of the post-plasma catalysis on the reaction performance.
机译:本文首次证明了通过滑行弧排出血浆与光催化剂TIO2进行CO2解离的结合。已经研究了在下游添加托盘的作用,并研究了催化剂与血浆的组合。已经评估了两种不同的血浆催化组合模式,即血浆内催化和血浆后催化,重点是对潜在机制的分析。结果表明,通过添加托盘来修饰滑动电弧反应器可以增强血浆处理的气体比例,从而改善反应性能。在血浆内催化模式下,将滑行电弧排放与TiO2组合二氧化碳激活形式的特殊协同作用。 TiO2的存在显着提高了138%的二氧化碳转化,并以2 l/min的流速增长了133%。血浆激活效应产生能量电子,可以在催化剂表面产生电子孔对,被认为是血浆催化协同产生的主要因素。血浆后催化对反应性能的可忽略的影响进一步证明了这种机制。

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