NS脉冲流光放电不去除

T. Tokuichi, D. Wang, T. Namihira, S. Katsuki, H. Akiyama
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引用次数: 3

摘要

只提供摘要形式。传统的SCR法、电子束法和石灰石膏法不能完全处理废气。此外,传统方式的能源效率和成本仍然是消极的情况。近年来,放电等离子体污染控制技术作为一种低成本、高能效的废气处理方法受到了广泛的研究。在我们的实验室中,脉冲流放电等离子体是一种非热等离子体,用于处理废气。由于施加电压的脉冲宽度对去除污染物的能量效率有很大影响,因此短脉冲发生器的开发对于实际应用具有至关重要的意义。本文研制了一种能输出5ns脉冲电压的ns脉冲发生器。在此基础上,利用ns脉冲发生器进行了NO去除实验。结果表明,毫米波脉冲放电与亚毫米波脉冲放电相比,在去除NO的能量效率方面具有优势。由于ns脉冲流放电除硝的特性,施加在反应器上的电压极性和幅值对除硝能效的提高有显著影响。另一方面,同轴放电电抗器的长度越长,直径越小,其能量效率越高。当NO去除率为60%时,ns脉冲流放电的最大能量效率可达1.5 mol/kWh。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
No Removal by NS Pulsed Streamer Discharge
Summary form only given. The conventional methods such as SCR method, Electron Beam method and Lime-gypsum method could not treat exhaust gases completely. In addition, the energy efficiency and the cost in the conventional ways are still negative situation. In recent years, the pollution control techniques using electric discharge plasmas which could attract attention as the low cost and high energy efficient exhaust gas treatment method, have been widely studied. In our laboratory, pulsed streamer discharge plasmas which are one of the non-thermal plasmas have been used to treat exhaust gases. Since a pulse width of applied voltage has a strong influence on the energy efficiency of the removal of pollutants, the development of a short pulse generator is of paramount importance for practical applications. In this work, ns pulse generator which can output the 5ns pulsed voltage is developed. Furthermore, the NO removal experiment is conducted using the ns pulse generator. As the results, the ns pulsed discharge has an advantage in energy efficiency for NO removal in comparison with sub-mus pulsed discharge. As the characteristics of NO removal using the ns pulsed streamer discharge, the polarity of and the amplitude of applied voltage to the reactor have significant influences on the improvement of energy efficiency of NO removal. On the other hands, it is clear that the longer length of and the smaller diameter of the coaxial discharge reactor give the higher energy efficiency. The maximum energy efficiency of NO removal by ns pulsed streamer discharges reaches 1.5 mol/kWh at 60% of NO removal ratio.
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