利用纳秒宽脉冲功率处理氮氧化物

N. Shimomura, F. Fukawa, H. Akiyama
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引用次数: 8

摘要

氮氧化物(NOx)是引起酸雨的空气污染物之一。虽然氮氧化物处理的主要方法是化学处理,但脉冲功率处理已经得到了发展。流光放电产生的非热平衡等离子体处理NOx。脉冲功率处理效率高,设备成本低。脉冲功率的缩短不仅可以提高处理效率,而且由于在介质上施加更高的电场而不会击穿,因此可以减少残留物质。利用所研制的纳秒级脉冲电源,将纳秒级宽度的电压脉冲施加在体积上。实现了氮氧化物的高效处理;然而,选择合适的实验条件是困难的。这是因为处理NOx的反应器的配置以及发生器与反应器之间的匹配是选择的关键。虽然由于NOx检测器的技术问题,去除率有一些误差,但处理的几个特征变得清晰起来。然而,还需要进一步的实验
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Treatment of Nitrogen Oxides Using Nanosecond Width Pulsed Power
Nitrogen oxides (NOx) are one of the air pollutants that cause acid rain. While the principal method of NOx treatment is a chemical processing, the treatment using pulsed power has been developed. Non-thermal equilibrium plasma produced with streamer discharge treats the NOx. The treatment using pulsed power is efficient and the cost of the equipment is low. A pulse shortening of pulsed power would not only improve the efficiency of the treatment but decrease the residual substance since higher electric field is applied on the medium without breakdowns. Using the developed nanosecond pulsed power generator, the voltage pulses with nanosecond width are applied on the volume. The efficient treatment of NOx is achieved; however, the preference of proper experimental conditions is difficult. This is because the configuration of reactor processing NOx, as well as the matching between the generator and the reactor are critical in choice. Although the removal ratios have some errors owing to technical problems due to the NOx detector, several characteristics of the treatment become clear. Nevertheless, further experiments are required
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