介质阻挡放电
林丹
流态化
化学
环境化学
分解
环境修复
土壤污染
污染
土壤水分
环境工程
环境科学
流化床
土壤科学
电极
杀虫剂
有机化学
生态学
物理化学
农学
生物
作者
Shuran Li,Zhen Liu,Shuran Li,Shihao Zhang,Hui Fu,Xuan Tu,Wei Xü,Xing‐Xing Shen,K. Yan,Ping Gan,Xi‐Qiao Feng
标识
DOI:10.1016/j.jhazmat.2022.130164
摘要
This study proposed the fluidization-like dielectric barrier discharge (DBD) plasma for the remediation of lindane contaminated soil and integrated physical and chemical reaction pathway. Soil particle distribution within the reactor was simulated with Euler-Euler and Gidaspow drag models, and a bipolar pulsed power supply was applied to energize the DBD reactor after full fluidized. The effect of soil particles movement on electric features was discussed in terms of voltage waveforms and Lissajous figures. Lindane degradation was found to be related to electrics parameters and soil properties. Soil samples before and after treatment were analyzed by XRD and SEM methods. A 95.98% lindane decomposition and 0.66 mgLindane/h average reaction rate were obtained with 3 wt% CaO injection by pulse power drove fluidization-like DBD after 32 min treatment. Ozone was proved to play a major role during lindane degrading by plasma. The reaction potential pathway of lindane decomposition contains 4 steps, including dehydrogen, dehydrochlorination, and dechlorination, respectively.
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