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Ozone Production by Streamer Discharges Using Nanosecond Pulsed Powers and Coaxial Reactor With Tensioned Inner Electrode

机译:使用纳秒脉冲功率和带张力内电极的同轴反应器通过流光放电产生臭氧

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The ozone production was studied using nanosecond pulsed-power systems and a coaxial reactor. Concentration of produced ozone decreased temporally when spark discharges were observed in the coaxial reactor due to curved inner wire electrode. At the same time, the reactor voltage fell down. In order to solve this problem, the tensioned inner wire electrode was adopted to be constant of electrode separation. As a result, the ozone concentration did not decrease and was kept as the peak concentration during pulse application. It was suggested that streamer discharges occurred stably due to restraining spark discharges caused by curve of inner wire electrode. Then, the ozone production efficiencies became constant on energy density because ozone concentrations increased proportionally with increasing energy density. Therefore, in order to obtain higher ozone concentration and stable ozone production, tensioned inner wire electrode of coaxial reactor was required.
机译:使用纳秒脉冲功率系统和同轴反应器研究了臭氧的产生。当在同轴反应器中观察到火花放电时,由于弯曲的内线电极,产生的臭氧浓度随时间降低。同时,电抗器电压下降。为了解决该问题,采用张紧的内线电极以使电极间隔恒定。结果,臭氧浓度没有降低并且在脉冲施加期间保持为峰值浓度。建议抑制因内部电极丝弯曲而产生的火花放电,从而稳定地产生流光放电。然后,臭氧产生效率在能量密度上变得恒定,因为臭氧浓度随能量密度的增加成比例地增加。因此,为了获得更高的臭氧浓度和稳定的臭氧产生,需要同轴反应器的张紧内线电极。

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