Formation of halogenated disinfection byproducts during the degradation of chlorophenols by peroxymonosulfate oxidation in the presence of bromide

被引:53
作者
Wang, Lu [1 ]
Kong, Deyang [2 ]
Ji, Yuefei [1 ]
Lu, Junhe [1 ]
Yin, Xiaoming [1 ]
Zhou, Quansuo [1 ]
机构
[1] Nanjing Agr Univ, Dept Environm Sci & Engn, Nanjing 210095, Jiangsu, Peoples R China
[2] Minist Environm Protect PRC, Nanjing Inst Environm Sci, Nanjing 210042, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
Chlorophenols; Peroxymonosulfate; Sulfate radical; Bromide; Disinfection byproducts; RADICAL-BASED DEGRADATION; PHENOLIC-COMPOUNDS; RATE CONSTANTS; SULFATE; 2,4,6-TRICHLOROPHENOL; ACTIVATION; PENTACHLOROPHENOL; TOXICITY; DECHLORINATION; SPECIATION;
D O I
10.1016/j.cej.2018.03.006
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Advanced oxidation processes based on sulfate radical (SO4 center dot-) have obtained great attention in water treatment and in-situ ground water/soil remediation. In this study, the degradation of chlorophenols (CPs) in Co2+ activated peroxymonosulfate (PMS) oxidation process was explored. It was found that 2-chlorophenol, 2,4-dichlorophenol, and 2,4,6-trichlorophenol could be effectively removed in Co2+/PMS oxidation process. Presence of Br- greatly accelerated the transformation of the CPs, which can be explained by the formation of reactive bromine species including both bromine radical species and free bromine from the oxidation of Br- by SO4 center dot-. Br- could also be oxidized by PMS directly to form free bromine. Thus, degradation of the CPs was also observed in PMS oxidation process without any activators in the presence of Br-. Reactions between CPs and reactive bromine species resulted in the formation of brominated intermediates and disinfection byproducts (DBPs). Brominated phenolic intermediates such as Br2Cl-CP, BrCl2-CP, and Br2Cl2-CP were found in both Br-/PMS and Br-/Co2+/PMS systems. However, oxidized intermediates such as Br2Cl2-quinones were only identified in Br-/Co2+/PMS system. SO4 center dot- and radical bromine species are believed to be responsible for the formation of oxidized products. Bromoform and dibromoacetic acid were the main DBPs in both Br-/Co2+/PMS and Br-/PMS processes. Dichlorinated DBPs species, such as CHBrCl2 and dichloroacetic acid, were only found in Br-/Co2+/PMS system. Formation of dichlorinated DBPs suggests both dechlorination and chlorination reactions occurred, during which SO4 center dot- played a key role. The findings of this study indicate that presence of Br- can significantly facilitate the removal of organic contaminants but lead to brominated DBPs in PMS oxidation process, which should be taken into consideration when PMS is applied in environmental matrices containing Br-.
引用
收藏
页码:235 / 243
页数:9
相关论文
共 50 条
[31]   Formation of brominated disinfection by-products and bromate in cobalt catalyzed peroxymonosulfate oxidation of phenol [J].
Liu, Kuo ;
Lu, Junhe ;
Ji, Yuefei .
WATER RESEARCH, 2015, 84 :1-7
[32]   Degradation of carbamazepine and disinfection byproducts formation in water distribution system in the presence of copper corrosion products [J].
Sheng, Da ;
Zhu, Shumin ;
Zhang, Wei ;
Bu, Lingjun ;
Wu, Yangtao ;
Wang, Jue ;
Zhou, Shiqing .
CHEMOSPHERE, 2021, 282
[33]   Formation of Aromatic Halogenated Disinfection Byproducts in Swimming Pool Water during Chlorination: Organic Precursors and Mechanisms [J].
Wang, Junjie ;
Wu, Hongyu ;
Ma, Tao ;
Chen, Haoran ;
Chen, Chuze ;
Wang, Yuting ;
Xian, Qiming ;
Gong, Tingting .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2024, 58 (49) :21782-21793
[34]   Formation of new brominated disinfection byproducts during chlorination of saline sewage effluents [J].
Ding, Guoyu ;
Zhang, Xiangru ;
Yang, Mengting ;
Pan, Yang .
WATER RESEARCH, 2013, 47 (08) :2710-2718
[35]   Unexpected decrease of N-Nitrosodimethylamine formation during peroxymonosulfate oxidation: The other side of bromide [J].
Shen, Linlu ;
Yan, Pengwei ;
Shen, Jimin ;
Kang, Jing ;
Shen, Yang ;
Wang, Binyuan ;
Zhao, Shengxin ;
Gong, Yingxu ;
Li, Yabin ;
Cheng, Yizhen ;
Wang, Shuyu ;
Chen, Zhonglin .
CHEMICAL ENGINEERING JOURNAL, 2023, 460
[36]   Molecular-Level Insights into the Formation of Traditional and Novel Halogenated Disinfection Byproducts [J].
Milstead, Reid P. ;
Remucal, Christina K. .
ACS ES&T WATER, 2021, 1 (08) :1966-1974
[37]   Characterization of enoxacin (ENO) during ClO2 disinfection in water distribution system: Kinetics, byproducts, toxicity evaluation and halogenated disinfection byproducts (DBPs) formation potential [J].
He, Guilin ;
Zhang, Tuqiao ;
Zhang, Qingzhou ;
Dong, Feilong ;
Wang, Yonglei .
CHEMOSPHERE, 2021, 283
[38]   Trihalomethane yields from twelve aromatic halogenated disinfection byproducts during chlor(am)ination [J].
Hu, Shaoyang ;
Gong, Tingting ;
Wang, Junjie ;
Xian, Qiming .
CHEMOSPHERE, 2019, 228 :668-675
[39]   Formation of halogenated disinfection byproducts in chlorinated real water during making hot beverage: Effect of sugar addition [J].
Qiu, Chuyin ;
He, Weiting ;
Li, Yu ;
Jiang, Feng ;
Pan, Yang ;
Zhang, Meihui ;
Lin, Daying ;
Zhang, Kaili ;
Yang, Yanduo ;
Wang, Wen ;
Hua, Pei .
CHEMOSPHERE, 2022, 305
[40]   Novel solar/sulfite advanced oxidation process for carbamazepine degradation: Radical chemistry, transformation pathways, influence on disinfection byproducts and toxic changes [J].
Chen, Han ;
Lin, Tao ;
Wang, Peifang ;
Zhang, Xue ;
Jiang, Fuchun ;
Wang, Yuchen .
CHEMICAL ENGINEERING JOURNAL, 2023, 451