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Removal of Toluene,Chlorobenzene,and Benzene by a Needle-to-Net Corona Discharge Reactor

机译:针网式电晕放电反应器去除甲苯,氯苯和苯

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A corona discharge reactor consisting of a hollow needle cathode and a net anode was used to remove benzene,toluene,and chlorobenzene in a synthetic air stream.Two gas flow directions were adopted to examine the contributions of the separated reaction zones,a high-energy corona zone at the needle cathode tip and a relatively large zone outside it.The target gas was fed in the corona zone through the needle cathode and exhausted through the net anode.Inversely,the gas was fed in through the net anode and exhausted through the needle cathode.It was observed that the removal efficiency of these components did not depend on the gas flow directions,indicating that the spatial distribution of the reactivity was not influential on the removal efficiency of the three target gas species.This means that the high electric field zone around the needle cathode tip would overwhelm the surrounding low-energy zone.In addition,the contribution of ozone reaction was observed as insignificant.Considering a reported ozone distribution,this result also indicates that the main reactive zone is the corona zone at the cathode tip.
机译:用空心针状阴极和净阳极组成的电晕放电反应器去除合成气流中的苯,甲苯和氯苯。采用两个气体流向检查分离的反应区的贡献,高能针状阴极尖端处有一个电晕区,而在针状阴极外部有一个较大的区域。目标气体通过针状阴极进入电晕区,并通过净阳极排出。相反,气体通过净阳极进料,并通过阳极排出。针状阴极。观察到这些组分的去除效率不依赖于气体的流动方向,表明反应性的空间分布对三种目标气体的去除效率没有影响。针状阴极尖端周围的磁场区域将淹没周围的低能区域。此外,观察到臭氧反应的贡献微不足道。报告的臭氧分布,该结果还表明主要的反应区是阴极尖端的电晕区。

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