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Planar Laser-Induced Fluorescence Diagnostics for Spatiotemporal OH Evolution in Pulsed Corona Discharge

机译:脉冲电晕放电中时空OH释放的平面激光诱导荧光诊断

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OH radicals play an important role in pollutant removal in nonthermal plasmas. It is crucial to clarify the behavior of OH radicals in this process. A time-resolved 2-D OH radial distribution was investigated in a pulsed corona discharge by planar laser-induced fluorescence at atmospheric pressure and room temperature. The OH evolutions under different gas components were studied, and the evolution process was simulated. The OH decay processes were found to be divided into two periods: a fast decay period and a slow decay period. The O, N, and $hbox{HO}_{2}$ are dominant radicals for OH generation and decay. The OH radicals are mainly generated near a nozzle electrode. The concentration variations of $hbox{O}_{2}$, NO, and $ hbox{H}_{2}hbox{O}$ in the background gas led to different OH density evolutions. The OH distribution zones were different as gas components varied. The maximum area of OH radical distribution after discharge decreased by 20$%$ as $hbox{O}_{2}$ increased from 5$%$ to 8 $%$, and it decreased by 69$ %$ as NO (150 ppm) was added into the background gas.
机译:OH自由基在非热等离子体中的污染物去除中起着重要作用。阐明此过程中OH自由基的行为至关重要。在大气压和室温下,通过平面激光诱导的荧光在脉冲电晕放电中研究了时间分辨的2-OH径向分布。研究了不同气体组分下的OH演化,并模拟了其演化过程。发现OH衰变过程分为两个时期:快速衰变期和缓慢衰变期。 O,N和$ hbox {HO} _ {2} $是OH生成和衰变的主要自由基。 OH自由基主要在喷嘴电极附近产生。 $ hbox {O} _ {2} $,NO和$ hbox {H} _ {2} hbox {O} $在背景气体中的浓度变化导致不同的OH密度变化。 OH分布区随着气体成分的变化而不同。放电后OH自由基的最大分布面积减少了20 %%,原因是hbox {O} _ {2} $从5 %%增加到8 %%,而NO减少了69 %%(150 ppm)被添加到背景气体中。

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