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Experimental and theoretical study of ozone generation in pulsed positive dielectric barrier discharge

机译:脉冲正介电势垒放电中臭氧产生的实验和理论研究

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This paper studies ozone synthesis in a dielectric barrier discharge reactor powered by a high voltage positive pulse power supply with a short duration (w400 ns). The influence of ozone concentration on the peak pulsed voltage (4.8 kVe20 kV), the pulse repetition rate (50 ppse300 pps) and gas flow rate is investigated. It is shown that ozone concentration reaches its maximum of 74.1 g/m3 at pulse repetition rate of 300 pps and applied voltage of 20 kV. A numerical model which describes the influence of both electrical and discharge configuration parameters on ozone concentration is developed. The ozone destruction factor is taken into account. The derived equation turns out to be validated by comparing the experimental results with numerical data. This investigation offers substantial insight in practical design of ozonizers and selection of an appropriate set of operating conditions.
机译:本文研究了由高电压正脉冲电源(持续时间短(w400 ns))供电的介质阻挡放电反应器中的臭氧合成。研究了臭氧浓度对峰值脉冲电压(4.8 kVe20 kV),脉冲重复频率(50 ppse300 pps)和气体流速的影响。结果表明,在300 pps的脉冲重复频率和20 kV的施加电压下,臭氧浓度达到最高值74.1 g / m3。建立了描述电参数和放电参数对臭氧浓度影响的数值模型。考虑到臭氧破坏因子。通过将实验结果与数值数据进行比较,可以证明所推导的方程式是有效的。这项研究为臭氧发生器的实际设计和选择合适的运行条件提供了实质性的见识。

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