Review of Research Progress of Plasma Chemical Warfare Agents Degradation

被引:0
|
作者
Wang R. [1 ]
Li Z. [1 ]
Hu P. [1 ]
Yang Y. [1 ]
Xia Z. [1 ]
机构
[1] College of Mechanical and Electrical Engineering, Beijing University of Chemical Technology, Beijing
关键词
Degradation mechanism; Low temperature plasma; Plasma degradation; Plasma jet;
D O I
10.19595/j.cnki.1000-6753.tces.200091
中图分类号
学科分类号
摘要
This paper mainly discusses the research progress of chemical warfare agents (CWAs) decontamination by low temperature plasma technology. The classification and toxicity of CWAs were reviewed. The advantages and disadvantages, current developing trend and feasibility of traditional decontamination technology and catalyst decontamination were analyzed. Besides, low temperature plasma technology was introduced for CWAs degradation. The application of different plasma discharges including plasma jet, dielectric barrier discharge and microwave plasma for CWAs degradation were reviewed. The type of CWAs, reaction conditions and degradation efficiency in a plasma-CWAs degradation system were well analyzed. In addition, the synergetic effect between plasma and catalyst for CWAs degradation was proposed and CWAs degradation mechanism was discussed. Finally, the main problem for large industrial application of plasma CWAs degradation technology was analyzed. This research has significant reference value for promoting the application of low temperature plasma for CWAs degradation. © 2021, Electrical Technology Press Co. Ltd. All right reserved.
引用
收藏
页码:2767 / 2781
页数:14
相关论文
共 69 条
  • [21] Dai Dong, Ning Wenjun, Shao Tao, Et al., Research status and development trend of atmospheric pressure low temperature plasma, Transactions of China Electrotechnical Society, 32, 20, pp. 1-9, (2017)
  • [22] Wang Zhiqiang, Cao Yunxiao, Xin Zhengwei, Et al., Experimental study on crushing magnesite ore by high voltage pulse discharge, Transactions of China Electrotechnical Society, 34, 4, pp. 863-870, (2019)
  • [23] Wu Shilin, Yang Qin, Shao Tao, Effect of low temperature plasma surface modified electrode materials on charge injection into liquid dielectrics, Transactions of China Electrotechnical Society, 34, 16, pp. 3494-3503, (2019)
  • [24] Bian Xingming, Zhu Junyu, Yang Wei, Et al., The role of low air pressure in the variation of negative corona-generated space charge in a rod to plane electrode, High Voltage, 3, 2, pp. 126-132, (2018)
  • [25] Xu Yutao, Tan Zhukui, Xiao Yong, Et al., Real time simulation analysis of self resistance sub module MMC, Journal of Electrical Engineering and Its Automation Compulsory, 31, 7, pp. 105-109, (2019)
  • [26] Shao Tao, Zhang Cheng, Wang Ruixue, Et al., Atmospheric pressure pulsed gas discharge and plasma applications, High Voltage Engineering, 42, 3, pp. 685-705, (2016)
  • [27] Liang Chenguang, Wang Bin, Li Fengting, Et al., Data correction algorithm for logarithmic simulation model of single phase arc grounding of high voltage transmission lines, Automation of Electric Power Systems, 43, 4, pp. 126-131, (2019)
  • [28] Shi Yaowei, Zhou Ruoyu, Cui Xinglei, Et al., Experiments on coplanar dielectric barrier discharge characteristics under different power supply excitations, Transactions of China Electrotechnical Society, 33, 22, pp. 5371-5380, (2018)
  • [29] Park J, Henins I, Herrmann H W, Et al., Gas breakdown in an atmospheric pressure radio-frequency capacitive plasma source, Journal of Applied Physics, 89, 1, pp. 15-19, (2001)
  • [30] Zhang Bo, Wang Lifeng, Liu Feng, Et al., Comparison of discharge characteristics of plasma jet arrays excited by AC and nanosecond pulses in helium, Transactions of China Electrotechnical Society, 34, 6, pp. 1319-1328, (2019)