圆柱表面介质阻挡放电(DBD)臭氧发生器的对比研究与实验优化

Rachida Hedara, S. Nemmiche
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引用次数: 0

摘要

介质阻挡放电(DBD)是一种更有效的臭氧产生介质,它需要几千伏的电压和几十千赫的频率。本研究的主要目的是对将用于水处理厂的具有表面DBD的圆柱形臭氧发生器进行建模和优化。通过发挥电学参数(电压,氧流量)和几何参数(电介质的性质和直径,电极的长度),达到高臭氧效率和最低的能耗。建议使用直径和电极长度较小的圆柱形表面放电反应器,并尽可能缩短氧循环间隔,以达到令人满意的臭氧浓度,同时降低功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Study and Experimental Optimization of Ozone Generators by Cylindrical Surface Dielectric Barrier Discharge (DBD)
The dielectric barrier discharge (DBD) is a more efficient medium of ozone production, which requires voltages of the order of several kV and frequencies of a few tens of kHz. The principal objective of this study is to model and optimize a cylindrical-shaped ozone generator with a surface DBD that will be used in a water treatment plant. By playing on the electrical parameters (voltage, oxygen flow) and geometric parameters (the nature and diameter of the dielectric, the length of the electrode), to achieve high ozone efficiency and minimum energy consumption. It is recommended to use cylindrical surface discharge reactors with reduced diameter and electrode length and with the smallest possible oxygen circulation interval to achieve satisfactory ozone concentrations, with reduced power consumption.
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