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Consideration of Reactor Configuration of High Yield Ozonizer by Nanosecond Pulsed Power Discharge

机译:纳秒脉冲电力放电对高产臭氧器反应器构型的考虑

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Ozone has many applications in various fields with an advantage of low environmental load, e.g., sterilization, deodorization and bleaching. A part of industrial applications of ozone has already been put into practical use. While the barrier discharge is mainly used for commercial production of ozone, the various discharge methods have been studied to achieve higher yield and higher concentration. A nanosecond pulsed power generator has been developed and the ozone production experiment is conducted. As the width of pulsed power shortens, the efficiency of production improves, but the load matching becomes difficult. Then, the parallel connection of reactors is adopted. The discharge volume increases with parallel reactors. The reactor is coaxial and consists of wire and cylinder electrodes. Since arc discharges are controlled due to using nanosecond pulsed power discharge on the parallel reactors, the improved shape of insulators prevents surface discharges. The 8 parallel and 12 parallel reactors give ozone yield of about 280 g/kWh for system efficiency (500 mm reactor). In this study, the improvement of load matching is important with the discharge volume for high yield
机译:臭氧在各种领域中具有许多应用,具有低环境负荷,例如灭菌,除臭和漂白。臭氧的工业应用的一部分已经进行了实际使用。虽然屏障放电主要用于商业生产臭氧,但已经研究了各种放电方法以获得更高的产量和更高的浓度。开发了纳秒脉冲发电机,并进行臭氧生产实验。随着脉冲功率的宽度缩短,生产效率提高,但负载匹配变得困难。然后,采用反应器的并联连接。放电体积随并联反应器增加。反应器是同轴的,由线和圆筒电极组成。由于在并联反应器上使用纳秒脉冲放电来控制电弧放电,因此绝缘体的改进的形状防止了表面放电。对于系统效率(500mM反应器),8平行和12个平行反应器可给出约280g /千瓦时的臭氧产率。在这项研究中,负载匹配的改善对于高产的放电体积很重要

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