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Functional relationship between material property applied frequency and ozone generation for surface dielectric barrier discharges in atmospheric air

机译:大气中表面介电势垒放电的材料特性施加频率和臭氧生成之间的函数关系

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摘要

We report the experimental characterization of ozone generation in dielectric barrier discharges as a function of the material and characteristics of the dielectric barrier, operating frequency and the power consumed by a surface DBD-plasma reactor in air at atmospheric pressure. To identify the effect of the dielectric barrier, ozone production curves corresponding to ten dielectric barriers with different effective thicknesses and thermal properties are compared and analyzed for two combinations of voltage amplitudes and frequencies: 7 kV/10 kHz and 8.5 kV/14 kHz. The influence of the operating frequency over the ozone generated by a DBD-plasma reactor is studied by varying the frequency in the range 8–20 kHz. The correlation between power measurements and ozone concentrations as well as ozone quenching effects at extreme power conditions are also discussed.
机译:我们报告了介电势垒放电中臭氧产生的实验特性,该特性与材料和介电势垒特性,工作频率以及大气压下表面DBD-等离子体反应器在空气中消耗的功率有关。为了确定介电屏障的影响,比较并分析了电压振幅和频率的两种组合(分别为7 dielectrickV / 10 kHz和8.5 forkV / 14 kHz)下与具有不同有效厚度和热特性的十个介电垒相对应的臭氧生产曲线。通过在8–20 kHz范围内改变频率,研究了工作频率对DBD等离子体反应器产生的臭氧的影响。还讨论了功率测量值与臭氧浓度之间的相关性以及极端功率条件下的臭氧猝灭效果。

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