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Asymmetric properties and ozone production of surface dielectric barrier discharge with different electrode configurations

机译:不同电极配置的表面介电势垒放电的不对称性质和臭氧产生

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For two electrode configurations of surface dielectric barrier discharge we investigated the asymmetry of the electrical parameters for the positive and negative half-periods of the discharge voltage and the discharge ozone production. In both configurations the first electrode was a square on one side of the dielectric plate. A set of 9 or 14 interconnected parallel strips on the other side of this plate served as the second electrode. The asymmetry is caused by different micro-discharges activity, which is reflected by peaks in the discharge current waveforms. When the strip electrode is connected to the high voltage terminal of the power source the series of current peaks appears mainly during the positive voltage half-periods whereas only a few smaller current peaks are observed during the negative voltage half-periods. When the strip electrode is grounded the situation is reversed. For the electrode configuration with 14 strips the asymmetry in micro-discharges activity is decreased in comparison with the 9 strip electrode. Finally the discharge electrode system with 9 strips produces, for a particular power, higher ozone concentrations than the system with 14 strips and the concentration of ozone does not depend on which electrode is grounded.
机译:对于表面介电势垒放电的两个电极配置,我们研究了放电电压的正负半周期和放电臭氧产生的电参数的不对称性。在两种配置中,第一电极在电介质板的一侧上都是正方形。该板另一侧的一组9个或14个相互连接的平行带用作第二电极。不对称性是由不同的微放电活性引起的,这由放电电流波形中的峰值反映出来。当条形电极连接到电源的高压端子时,一系列电流峰主要出现在正电压半周期内,而在负电压半周期内仅观察到一些较小的电流峰。当带状电极接地时,情况相反。对于具有14条带的电极配置,与9条带电极相比,微放电活性的不对称性降低了。最后,具有9条带的放电电极系统对于特定功率产生的臭氧浓度要高于具有14条带的系统,并且臭氧浓度不取决于哪个电极接地。

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