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Positive and negative corona discharges in flowing carbon dioxide

机译:流动二氧化碳中的正负电晕放电

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The effect of the gas flow rate (10-320 cm(3) min(-1)) on the process of ozone formation in both positive and negative corona discharges has been studied using a coaxial cylindrical system of electrodes fed by dry CO2. The source of ozone is electron impact dissociation of carbon dioxide to liberate oxygen atoms and their subsequent formation of oxygen molecules, which may then form ozone by the well-known Chapman mechanism. Small increases in flow rate were found to cause a major increase in the discharge current measured in the negative corona discharge. This effect was found to correspond to observed changes in the ozone concentration within the discharge and is a consequence of dissociative electron attachment to ozone leading to negative ion formation in the discharge. In contrast no direct effect of ozone on the positive corona discharge current was observed. The observed increase in average positive ion mobility in the positive corona is ascribed to the conversion of O-2(+) ions into more mobile O-2(+) ions. Considerably higher ozone concentrations (up to 100 ppm) were found in the negative corona discharge. The effect of the geometry of the system was also explored by using three different stainless steel outer electrodes with diameters of 10, 15 and 27 mm. Ozone concentrations were found to decrease significantly with increasing radius of the outer electrode at the same average input energy density.
机译:使用同轴的圆柱状干式二氧化碳电极研究了气体流速(10-320 cm(3)min(-1))对正负电晕放电中臭氧形成过程的影响。臭氧的来源是二氧化碳的电子碰撞解离,释放出氧原子并随后形成氧分子,然后氧分子可通过众所周知的查普曼机制形成臭氧。发现流量的小幅增加会导致负电晕放电中测得的放电电流大幅增加。发现该效应对应于观察到的放电中臭氧浓度的变化,并且是离解性电子附着到臭氧上导致放电中形成负离子的结果。相反,未观察到臭氧对正电晕放电电流的直接影响。在正电晕中观察到的平均正离子迁移率增加归因于O-2(+)离子向更多可移动O-2(+)离子的转化。在负电晕放电中发现了更高的臭氧浓度(最高100 ppm)。还通过使用直径为10、15和27 mm的三种不同的不锈钢外部电极来探索系统几何形状的影响。发现在相同的平均输入能量密度下,臭氧浓度会随着外电极半径的增加而显着降低。

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