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Influence of Relative Humidity on Non-thermal Surface Discharge Plasma Processing of gas-phase Toluene

机译:相对湿度对气相甲苯非热表面放电等离子体处理的影响

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The performance of gas-phase toluene decomposition was studied by using a surface discharge plasma reactor with or without photo-catalyst under different relative humidity: 0%, 25% and 50% at room temperature and atmospheric pressure.The main purpose of this work is to investigate the effect of relative humidity on the discharge character and toluene oxidation. It was found that the electrical charge and energy density decreased when the percentage of water in air increased. The performance of the plasma became better in humidified air compared with that in the dry air (RH=0%).It was observed that toluene removal rate, the selectivity to CO2 and COx in the decomposition products and energy efficiency increased with the relative humidity increasing. However, it was noticed that humidity had some adverse influence on photo-catalysts activity. It was found that compared with the plasma alone system, plasma-photocatalysis system had higher removal efficiency and CO2 selectivity in moderate and low relative humidity (RH=25%,RH=0%).But with continuing increase of relative humidity(RH=50%), the catalyst activity was suppressed and energy efficiency decreased in the plasma-photocatalysis system.
机译:通过在室温和大气压下相对湿度分别为0%,25%和50%的条件下使用带或不带光催化剂的表面放电等离子体反应器研究气相甲苯的分解性能。这项工作的主要目的是研究相对湿度对放电特性和甲苯氧化的影响。发现当空气中水的百分比增加时,电荷和能量密度降低。相对于干燥空气(RH = 0%),等离子体在湿空气中的性能变得更好。观察到甲苯的去除率,分解产物对CO2和COx的选择性以及能量效率均随相对湿度的增加而增加增加。但是,注意到湿度对光催化剂活性有一些不利影响。结果发现,与单独的等离子体系统相比,等离子体光催化系统在中等和较低的相对湿度(RH = 25%,RH = 0%)下具有较高的去除效率和CO2选择性,但随着相对湿度的持续增加(RH = 50%),在等离子体光催化系统中,催化剂活性被抑制并且能量效率降低。

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