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Introduction of Tensioned Inner Wire Electrode for NOx Treatment With Nanosecond Pulsed Power System

机译:纳秒脉冲功率系统用于处理NOx的张紧内电极的介绍

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NO and NOx decomposition in a coaxial reactor using nanosecond pulsed power were investigated. NO and NOx removal ratio decreased with the increasing treatment time. In the case of 50 pps, spark-discharge occurrence attracted the inner wire electrode to the outer electrode in the coaxial reactor. When the electrode separation in coaxial reactor became short, the spark discharges occurred more frequently in the center of reactor. Then, the volume of streamer discharges reduced. When an inner wire electrode was tensed by a spring was introduced in the coaxial reactor, the spark discharges were controlled and the narrowing of electrode separation was not observed. Accordingly, NO and NOx removal ratios did not decrease and became steady. The tensioned inner wire electrode worked out the potential of the coaxial reactor in using nanosecond pulsed powers.
机译:研究了使用纳秒脉冲功率的同轴反应器中的NO和NOx分解。随着处理时间的增加,NO和NOx的去除率降低。在50pps的情况下,在同轴电抗器中,火花放电的发生将内线电极吸引到外电极。当同轴电抗器中的电极间距变短时,在电抗器的中心更频繁地发生火花放电。然后,减少了拖缆的排出量。当通过弹簧将内线电极张紧时,将其引入同轴反应器中,控制了火花放电,未观察到电极间隔变窄。因此,NO和NOx的去除率没有降低并且变得稳定。张紧的内部金属丝电极使用纳秒脉冲功率计算出同轴电抗器的电势。

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