用脉冲放电在氧气中合成臭氧

W.J.M. Samaranayake, R. Hackam, H. Akiyama
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引用次数: 4

摘要

臭氧是一种强氧化剂和漂白剂,这使它成为一种有效的杀菌剂、杀毒剂和杀菌剂。因此,臭氧可以作为氯化工艺的替代品,能耗低,对环境没有有害影响。臭氧可用于许多工业应用,包括水的处理、工业废物和从烟道气中去除NO/ subx /和SO/ subx /、漂白过程、半导体工业和其他应用。因此,有必要从实验和数值模拟两方面研究各种参数对臭氧产生的影响。对臭氧生产中广泛使用的常压下极短脉冲流放电在氧气中产生的产物进行了数值模拟。本文模拟了各种等离子体化学反应的速率系数,包括在流光电晕放电中发生的分子氧的电子冲击解离,作为电场和周围气体温度在线-圆柱结构中的函数。研究了单脉冲、多脉冲、气体温度和气体压力对臭氧生成的影响。本研究旨在了解臭氧发生器在施加100 ns短脉冲电压后的放电现象,这是实验无法观察到的。臭氧浓度对所研究参数的依赖关系与实验结果的趋势和已发表的文献基本一致,从而证实了模拟模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ozone synthesis in oxygen using a pulsed discharge
Ozone is a strong oxidizing and bleaching agent, which makes it a potent germicide, viricide and bactericide. Therefore, ozone can be used as an alternative to chlorination processes with low energy consumption and without detrimental effects to the environment. Ozone can be applied to numerous industrial applications including treatments of water, industrial wastes and removal of NO/sub x/ and SO/sub x/ from flue gases, bleaching processes, in the semiconductor industry and other applications. Therefore, it is necessary to investigate the effects of various parameters on the production of ozone both experimentally and by numerical simulation. A numerical simulation of the products created in oxygen which is widely used in the production of ozone and employing very short pulsed streamer discharges at atmospheric pressure was performed. A simulation has been made of the rate coefficients of various plasma chemical reactions including electron impact dissociation of molecular oxygen, which occurs in the streamer corona discharge as functions of the electric field and the ambient gas temperature in a wire-to-cylinder configuration. The influence on the production of ozone of a single pulse, multiple pulses, gas temperature and gas pressure have been investigated. This study was aimed at understanding the discharge phenomenon in an ozonizer after applying a short pulsed voltage for 100 ns in more details that could not be observed by experiments. The dependence of the concentration of ozone on the parameters studied, generally agreed with the trends of the experimental results and with the published literature thus confirming the validity of the simulation model.
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