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Water Content Effect on Oxides Yield in Gas and Liquid Phase Using DBD Arrays in Mist Spray

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【作者】 陈秉岩朱昌平费峻涛何湘殷澄王媛蒋永锋陈龙威高远韩庆邦

【Author】 CHEN Bingyan;ZHU Changping;FEI Juntao;HE Xiang;YIN Cheng;WANG Yuan;JIANG Yongfeng;CHEN Longwei;GAO Yuan;HAN Qingbang;Department of Mathematics and Physics, Hohai University;Jiangsu Province Key Laboratory of Environmental Engineering;Hohai University Nantong Institute of Marine and Offshore Engineering;College of Energy and Electrical Engineering, Hohai University;College of Internet of Things, Hohai University;College of Mechanical and Electrical Engineering, Hohai University;Institute of Plasma Physics, Chinese Academy of Sciences;

【机构】 Department of Mathematics and Physics, Hohai UniversityJiangsu Province Key Laboratory of Environmental EngineeringHohai University Nantong Institute of Marine and Offshore EngineeringCollege of Energy and Electrical Engineering, Hohai UniversityCollege of Internet of Things, Hohai UniversityCollege of Mechanical and Electrical Engineering, Hohai UniversityInstitute of Plasma Physics, Chinese Academy of Sciences

【摘要】 Electric discharge in and in contact with water can accompany ultraviolet(UV)radiation and electron impact, which can generate a large number of active species such as hydroxyl radicals(OH), oxygen radical(O), ozone(O3) and hydrogen peroxide(H2O2). In this paper, a nonthermal plasma processing system was established by means of dielectric barrier discharge(DBD)arrays in water mist spray. The relationship between droplet size and water content was examined,and the effects of the concentrations of oxides in both treated water and gas were investigated under different water content and discharge time. The relative intensity of UV spectra from DBD in water mist was a function of water content. The concentrations of both O3 and nitrogen dioxide(NO2) in DBD room decreased with increasing water content. Moreover, the concentrations of H2O2, O3 and nitrogen oxides(NOx) in treated water decreased with increasing water content,and all the ones enhanced after discharge. The experimental results were further analyzed by chemical reaction equations and commented by physical principles as much as possible. At last,the water containing phenol was tested in this system for the concentration from 100 mg/L to9.8 mg/L in a period of 35 min.

【Abstract】 Electric discharge in and in contact with water can accompany ultraviolet(UV)radiation and electron impact, which can generate a large number of active species such as hydroxyl radicals(OH), oxygen radical(O), ozone(O3) and hydrogen peroxide(H2O2). In this paper, a nonthermal plasma processing system was established by means of dielectric barrier discharge(DBD)arrays in water mist spray. The relationship between droplet size and water content was examined,and the effects of the concentrations of oxides in both treated water and gas were investigated under different water content and discharge time. The relative intensity of UV spectra from DBD in water mist was a function of water content. The concentrations of both O3 and nitrogen dioxide(NO2) in DBD room decreased with increasing water content. Moreover, the concentrations of H2O2, O3 and nitrogen oxides(NOx) in treated water decreased with increasing water content,and all the ones enhanced after discharge. The experimental results were further analyzed by chemical reaction equations and commented by physical principles as much as possible. At last,the water containing phenol was tested in this system for the concentration from 100 mg/L to9.8 mg/L in a period of 35 min.

【基金】 supported by National Natural Science Foundation of China(Nos.11274092,51107033,11404092,11274091);the Nantong Science and Technology Project,China(No.BK2014024);the Open Project of Jiangsu Province Key Laboratory of Environmental Engineering,China(No.KF2014001);the Fundamental Research Funds for the Central Universities,China(No.2014B11414)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2016年01期
  • 【分类号】O53;O461
  • 【被引频次】3
  • 【下载频次】49
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