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国家自然科学基金(11075041)

作品数:4 被引量:9H指数:2
相关作者:邱剑侯惠奇刘克富赵海洋何坚更多>>
相关机构:复旦大学更多>>
发文基金:国家自然科学基金更多>>
相关领域:环境科学与工程金属学及工艺理学化学工程更多>>

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Treatment of Wastewater with High Conductivity by Pulsed Discharge Plasma被引量:3
2014年
A wastewater treatment system was established by means of pulsed dielectric barrier discharge(DBD). The main advantage of this system is that the wastewater is employed as one of the electrodes for the degradation of rhodamine B, which makes use of the high conductivity and lessenes its negative influence on the discharge process. At the same time, the reactive species like ozone and ultraviolet(UV) light generated by the DBD can be utilized for the treatment of wastewater. The effects of some factors like conductivity, peak pulse voltage, discharge frequency and pH values were investigated. The results show that the combination of these reactive species could enhance the degradation of the dye while the ozone played the most important role in the process. The degradation efficiency was enhanced with the increase of energy supplied. The reduction in the concentration of rhodamine B was much more effective with high solution conductivity;under the highest conductivity condition, the degradation rate could rise to 99%.
王兆均姜松刘克富
关键词:OZONEDEGRADATIONCONDUCTIVITY
Non-thermal plasma treatment of Radix aconiti wastewater generated by traditional Chinese medicine processing被引量:4
2016年
The wastewater effluent from Radix aconiti processing, an important step in the production processes of traditional Chinese medicine(TCM), is a type of toxic wastewater and difficult to treat. Plasma oxidation methods have emerged as feasible techniques for effective decomposition of toxic organic pollutants. This study examined the performance of a plasma reactor operated in a dielectric barrier discharge(DBD) to degrade the effluent from R. aconiti processing. The effects of treatment time, discharge voltage, initial p H value and the feeding gas for the reactor on the degradation of this TCM wastewater were investigated. A bacterium bioluminescence assay was adopted in this study to test the toxicity of the TCM wastewater after non-thermal plasma treatment. The degradation ratio of the main toxic component was 87.77% after 60 min treatment with oxygen used as feed gas and it was 99.59% when the initial p H value was 8.0. High discharge voltage and alkaline solution environment were beneficial for improving the degradation ratio. The treatment process was found to be capable of reducing the toxicity of the wastewater to a low level or even render it non-toxic. These experimental results suggested that the DBD plasma method may be a competitive technology for primary decomposition of biologically undegradable toxic organic pollutants in TCM wastewater.
Yiyong WenJianping YiShen ZhaoSong JiangYuming ChiKefu Liu
关键词:有毒有机污染物等离子体反应器加工废水
Yield of H_2O_2 in Gas-Liquid Phase with Pulsed DBD被引量:1
2014年
Electric discharge in water can generate a large number of oxidants such as ozone, hydrogen peroxide and hydroxyl radicals. In this paper, a non-thermal plasma processing system was established by means of pulsed dielectric barrier discharge in gas-liquid phase. The electrodes of discharge reactor were staggered. The yield of H2 O2 was enhanced after discharge. The e?ects of discharge time, discharge voltage, frequency, initial pH value, and feed gas were investigated. The concentration of hydrogen peroxide and ozone was measured after discharge. The experimental results were fully analyzed. The chemical reaction equations in water were given as much as possible. At last, the water containing Rhodamine B was tested in this system. The degradation rate came to 94.22% in 30 min.
姜松文贻勇刘克富
关键词:气液相DBD介质阻挡放电化学反应方程式
气-液两相高压脉冲介质阻挡放电降解罗丹明B被引量:1
2011年
在气-液两相混合物中进行高压脉冲介质阻挡放电产生非平衡等离子体,以罗丹明B水溶液为模拟废水处理对象,考察了不同因素对降解效果的影响.实验结果表明:提高脉冲电压峰值和脉冲频率及延长放电时间均可提高罗丹明B的去除率;溶液初始pH值的提高,对于降解效率影响不大;溶液初始质量浓度提高时,罗丹明B的降解率(百分比)降低,但是降解量(质量数)提高;反应器中通入氧气时的降解效果最好,空气次之,氮气最差;在脉冲电压峰值20 kV,脉冲频率250 Hz,溶液初始质量浓度90 mg/L,初始pH 6.4,氧气通入量为12.0 L/min的实验条件下,放电处理12 min,罗丹明B的去除率可达99.1%.
赵海洋刘克富邱剑何坚侯惠奇
关键词:罗丹明B降解
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