Different Performances of H2O2 to Oxidise Aldicarb and Hexazinone in the Advanced Oxidation Process of Ozone/Hydrogen Peroxide

被引:1
|
作者
冉治霖 [1 ]
孙楚 [2 ]
李绍峰 [3 ]
CRAIG Denver Williams [4 ]
TREVOR John Hocking [4 ]
机构
[1] School of Transportation and Environment,Shenzhen Institute of Information Technology
[2] College of Resources and Environment,Northeast Agricultural University
[3] School of Applied Science,University of Wolverhampton,Wolverhampton WV1 1LY,UK
[4] Shenzhen Key Lab of Industrial Water Saving&Municipal Sewage Reclamation Technology Shenzhen Polytechnic Institute
关键词
hexazinone; aldicarb; O3/H2O2; direct and indirect oxidation; H2O2consumption;
D O I
10.19884/j.1672-5220.2014.03.024
中图分类号
X52 [水体污染及其防治];
学科分类号
0815 ;
摘要
The degradations of hexazinone and aldicarb by direct ozonation combined an advanced oxidation process( AOP) of O3/H2O2 were investigated in this study focusing on the oxidation mechanism by identifying the hydrogen peroxide consumption during the oxidation process of the two chemicals. The results showed that H2O2 could enhance the removal rate of the triazine herbicide hexazinone,and it was consumed along with the variation of removal rate in the light of different pH levels. The addition of H2O2 contributed little to the removal of the thiocarbamate herbicide aldicarb and H2O2 content kept constantly throughout the degradation process. Tert-butyl alcohol( TBA) effectively scavenged the ·OH radical for hexazinone,but had no effect on the removal rate of aldicarb. Aldicarb removal was mainly attributed to direct ozonation molecule in both O3( 97.00%) and O3/H2O2( 96.76%)systems. Moreover,sole O3 could hardly oxidize hexazinone whereas·OH radicals contribute respective 74.70% and 97.50% of removal in O3 system and O3/H2O2 AOP. All of these findings suggest that the mechanism of ·OH radical generation and the chain reaction in O3/H2O2 AOP should be further discussed.
引用
收藏
页码:348 / 353
页数:6
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