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用185nm UV降解水中二苯甲酮和孔雀石绿
引用本文:闻瑞梅,葛伟伟.用185nm UV降解水中二苯甲酮和孔雀石绿[J].环境科学学报,2007,27(4):587-594.
作者姓名:闻瑞梅  葛伟伟
作者单位:1. 同济大学电子信息学院,上海,200092
2. 山东临沂市环境检测站,临沂,276000
摘    要:研究了185nm紫外光降解水中二苯甲酮和孔雀石绿和总有机碳(TOC)的规律.研究了浓度、体积、流速、pH等因素对二苯甲酮的降解效果的影响.通过改变污染物初始浓度、体积、流量、pH值以及添加无机离子来讨论185nm紫外光对孔雀石绿的降解效果,探讨了降解的最佳条件.降解达到了治理水中二苯甲酮和孔雀石绿污染的目的.用这种方法降解水中二苯甲酮和孔雀石绿,去除率能够达到99.9%以上,是一种非常有效的治理污染方法.实验同时验证了185nm UV降解水中的二苯甲酮和孔雀石绿符合准一级动力学规律.

关 键 词:185nm紫外线  降解  二苯甲酮  孔雀石绿  降解水  二苯甲酮  孔雀石绿  irradiation  water  green  diphenyl  ketone  path  degradation  力学规律  验证  实验  治理污染  去除率  方法  条件  最佳  无机离子  添加  流量
文章编号:0253-2468(2007)04-0587-08
收稿时间:2006/6/13 0:00:00
修稿时间:06 13 2006 12:00AM

A Study on the degradation path of diphenyl ketone and malachite green in water by 185nm UV irradiation
WEN Ruimei and GE Weiwei.A Study on the degradation path of diphenyl ketone and malachite green in water by 185nm UV irradiation[J].Acta Scientiae Circumstantiae,2007,27(4):587-594.
Authors:WEN Ruimei and GE Weiwei
Institution:1. Electronics and Information Engineering, Shanghai Tongji University, Shanghai 200092; 2. Shan Dong Linyi Environmental Monitoring Center, Linyi 276000
Abstract:In this paper the reduction process of diphenyl ketone, malachite green, and total organic carbon (TOC) in water by using 185nm UV irradiation was studied. The effect of initial pollutant concentration, volume, flow rate and initial pH values on diphenyl ketone degradation was discussed. The effectiveness of degradation of malachite green was studied by changing initial malachite green concentration, volume, flow rate, initial pH values and concentration of added inorganic ions. The optimum condition for removal of diphenyl ketone and malachite green in water was discussed. The 185nm UV irradiation has been proved to be effective for removal of diphenyl ketone and malachite green in water with efficiency of above 99.9%. The kinetics rule for degradation of diphenyl ketone and malaclite green is discussed. The degradation reaction is found to fot for pseudo-first order reaction.
Keywords:185nm UV  degradation path  diphenyl ketone  malachite green
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