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首页> 外文期刊>Plasma Science & Technology >Effects of Oxygen Concentration on Pulsed Dielectric Barrier Discharge in Helium-Oxygen Mixture at Atmospheric Pressure
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Effects of Oxygen Concentration on Pulsed Dielectric Barrier Discharge in Helium-Oxygen Mixture at Atmospheric Pressure

机译:常压下氧气浓度对氦氧混合物中脉冲介电势垒放电的影响

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In this work the effects of O-2 concentration on the pulsed dielectric barrier discharge in helium-oxygen mixture at atmospheric pressure have been numerically researched by using a one-dimensional fluid model in conjunction with the chosen key species and chemical reactions. The reliability of the used model has been examined by comparing the calculated discharge current with the reported experiments. The present work presents the following significant results. The dominative positive and negative particles are He-2(+) and O-2(-), respectively, the densities of the reactive oxygen species (ROS) get their maxima nearly at the central position of the gap, and the density of the ground state O is highest in the ROS. The increase of O-2 concentration results in increasingly weak discharge and the time lag of the ignition. For O-2 concentrations below 1.1%, the density of O is much higher than other species, the averaged dissipated power density presents an evident increase for small O-2 concentration and then the increase becomes weak. In particular, the total density of the reactive oxygen species reaches its maximums at the O-2 concentration of about 0.5%. This characteristic further convinces the experimental observation that the O-2 concentration of 0.5% is an optimal O-2/He ratio in the inactivation of bacteria and biomolecules when radiated by using the plasmas produced in a helium oxygen mixture.
机译:在这项工作中,通过使用一维流体模型,结合所选的关键物种和化学反应,对O-2浓度对大气压氦-氧混合物中脉冲介电势垒放电的影响进行了数值研究。通过将计算的放电电流与报告的实验进行比较,检查了所用模型的可靠性。本工作提出以下重要结果。主要的正负粒子分别为He-2(+)和O-2(-),活性氧(ROS)的密度几乎在间隙的中心位置达到最大值,基态O在ROS中最高。 O-2浓度的增加会导致放电强度越来越弱以及点火时间滞后。对于低于1.1%的O-2浓度,O的密度比其他物种高得多,对于较小的O-2浓度,平均耗散功率密度呈现明显的增加,然后增加变得微弱。特别地,活性氧物质的总密度在约0.5%的O-2浓度下达到其最大值。该特征进一步证实了实验观察结果,当使用氦氧混合物中产生的等离子体进行辐射时,0.5%的O-2浓度是细菌和生物分子失活时的最佳O-2 / He比。

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