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Corona discharge and ozone generation characteristics of a wire-plate discharge system with a glass-fiber layer

机译:具有玻璃纤维层的线板放电系统的电晕放电和臭氧产生特性

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摘要

Corona discharge and ozone generation characteristics of a wire-plate-type discharge system with a porous glass-fiber layer on the meshed-plate electrode have been investigated experimentally. The experimental results were compared with a conventional wire-plate discharge system. When a double glass-fiber layer is installed on the meshed-plate electrode of a wire-plate-type discharge system, the discharge system can generate a corona discharge twice, once from the corona wire, and again from the glass-fiber layer. As a result, the ozone output is significantly increased by a factor of 2.4-2.6, and increased ozone yields of about 3.1 and 1.5 times were obtained compared with those without the glass-fiber layer for positive and negative discharges, respectively. As a result, removal efficiency could be enhanced. By adopting a meshed plate instead of a solid plate, the pollutant gases to be treated were able to pass through the corona-discharging porous glass-fiber layer and the meshed plate with less pressure drop. This result meant that the removal capability could be increased. Consequently, the proposed wire-plate discharge system, with its porous glass-fiber layer and meshed-plate electrode, has the potential to be used as an effective discharge system for removing the pollutant gases and/or dust particles.
机译:实验研究了网状板电极上具有多孔玻璃纤维层的线板式放电系统的电晕放电和臭氧产生特性。将实验结果与传统的线板放电系统进行了比较。当在线板式放电系统的网状板电极上安装双层玻璃纤维层时,该放电系统可产生两次电晕放电,一次是从电晕丝产生的,另一次是从玻璃纤维层产生的。结果,与没有玻璃纤维层的正负放电相比,臭氧输出显着增加了2.4-2.6倍,并且臭氧产量分别提高了约3.1倍和1.5倍。结果,可以提高去除效率。通过采用网状板代替实心板,待处理的污染物气体能够以较少的压降通过电晕放电多孔玻璃纤维层和网状板。该结果意味着可以增加去除能力。因此,所提出的具有多孔玻璃纤维层和网状板电极的线板放电系统具有被用作去除污染物气体和/或灰尘颗粒的有效放电系统的潜力。

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