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Formation potentials of typical disinfection byproducts and changes of genotoxicity for chlorinated tertiary effluent pretreated by ozone 被引量:3
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作者 CAO Nan MIAO Tingting +2 位作者 LI Kuixiao ZHANG Yu YANG Min 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2009年第4期409-413,共5页
The effects of ozonation on the formation potential of typical disinfection byproducts (DBPs) and the changes of genotoxicity during post chlorination of tertiary effluent from a sewage treatment plant were investig... The effects of ozonation on the formation potential of typical disinfection byproducts (DBPs) and the changes of genotoxicity during post chlorination of tertiary effluent from a sewage treatment plant were investigated. Ozonation enhanced the yields of all detected chlorine DBPs except CHCI3. At a chlorine dose of 5 mg/L, the three brominated THMs and five HAAs increased, while chloroform decreased with the increase of ozone dose from 0 to 10 mg/L (ozone dose in consumption base). At a chlorine dose of 10 mg/L, the two mixed bromochloro species THMs and two dominant HAAs (DCAA and TCAA) increased firstly and then decreased with the increase of ozone dose, with the turning point approximately occurring at an ozone dose of 5 mg/L. The genotoxicity detected using umu test, on the other hand, was removed from 7 Ixg 4-NQO/L to a negligible level by ozonation under an ozone dose of 5 mg/L. Chlorination could further remove the genotoxicity to some extent. It was found that SUVA (UV absorbance divided by DOC concentration) might be used as an indicative parameter for monitoring the removal of genotoxicity during the oxidation. 展开更多
关键词 wastewater reclamation OZONATION CHLORINATION disinfection byproducts GENOTOXICITY
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pH effect on the formation of THM and HAA disinfection byproducts and potential control strategies for food processing 被引量:2
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作者 Yen-Con Hung Brian W.Waters +1 位作者 Veerachandra K.Yemmireddy Ching-Hua Huang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第12期2914-2923,共10页
Chlorine-based sanitizers have seen wide spread use in food sanitation. The reaction of chlorine species with organic matter is a concern for two reasons. Available chlorine can be “used up” by organic compounds res... Chlorine-based sanitizers have seen wide spread use in food sanitation. The reaction of chlorine species with organic matter is a concern for two reasons. Available chlorine can be “used up” by organic compounds resulting in a lower amount of chlorine available for disinfection. Another concern is that some forms of chlorine can react with some organic compounds to form toxic halogenated disinfection byproducts(DBPs). Many studies have been conducted to evaluate the role of hypochlorous acid(HOCl) and hypochlorite ion(OCl–) in the production of DBPs with a particular interest in the production of trihalomethanes(THMs) and haloacetic acids(HAAs). Since most of the chlorine reactions are pH dependent, pH is found to have a significant effect on the formation of chlorine DBPs. In many cases, the concentration of THMs decreases and HAAs increases as pH decreases. pH also plays an important role in the determination of the type and amount of DBPs formed, with lower, more acidic, pHs resulting in the formation of less chloroform. This review summarizes the information from the literature on the role of chlorine-based sanitizers as affected by pH in the formation of different types of DBPs. Alternative novel strategies to minimize the formation of DBPs are also discussed. 展开更多
关键词 SANITIZER CHLORINE disinfection byproducts pH HYPOCHLORITE
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Control strategies for disinfection byproducts by ion exchange resin,nanofiltration and their sequential combination
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作者 Yufeng Liao Mengmeng Tang +4 位作者 Mengyuan Li Peng Shi Aimin Li Yangyang Zhang Yang Pan 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2023年第10期89-101,共13页
Disinfection byproducts (DBPs) are emerging pollutants in drinking water with high health risks. Precursor reduction before disinfection is an effective strategy to control the formation of DBPs. In this study, three ... Disinfection byproducts (DBPs) are emerging pollutants in drinking water with high health risks. Precursor reduction before disinfection is an effective strategy to control the formation of DBPs. In this study, three types of anion exchange resins (AERs) and two types of nanofiltration (NF) membranes were tested for their control effects on DBP precursors, DBPs, and total organic halogen (TOX). The results showed that, for AER adsorption, the removal efficiencies of DBP precursors, DBPs, and TOX increased with the increase of resin dose, and the strong basic macroporous anion exchange resin (M500MB) had the highest removal efficiencies. For NF, the highest removal efficiencies were achieved at an operating pressure of 4 bar, and the membrane (NF90) with a smaller molecular weight cut-off, had a better control efficiency. However, AER adsorption was inefficient in removing dissolved organic carbon (DOC);NF was inefficient in removing Br− resulting in insufficient control of Br-DBPs. Accordingly, a sequential approach of AER (M500MB) adsorption followed by NF (NF90) was developed to enhance the control efficiency of DBPs. Compared with single AER adsorption and single NF, the sequential approach further increased the removal efficiencies of DOC by 19.4%–101.9%, coupled with the high Br− removal efficiency of 92%, and thus improved the reduction of cyclic DBPs and TOX by 3.5%–4.9%, and 2.4%–8.4%, respectively;the sequential approach also reduced the cytotoxicity of the water sample by 66.4%. 展开更多
关键词 disinfection byproducts CONTROL Anion exchange resin NANOFILTRATION CYTOTOXICITY
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Disinfection byproducts in indoor swimming pool water: Detection and human lifetime health risk assessment
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作者 Di Zhang Shengkun Dong +2 位作者 Li Chen Rong Xiao Wenhai Chu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2023年第4期378-386,共9页
Quantification of regulated and emerging disinfection byproducts (DBPs) in swimming pool water,as well as the assessment of their lifetime health risk are limited in China.In this study,the occurrence of regulated DBP... Quantification of regulated and emerging disinfection byproducts (DBPs) in swimming pool water,as well as the assessment of their lifetime health risk are limited in China.In this study,the occurrence of regulated DBPs (e.g.,trihalomethanes,haloacetic acids) and emerging DBPs (e.g.,haloacetonitriles,haloacetaldehydes) in indoor swimming pool water and the corresponding source water at a city in Eastern China were determined.The concentrations of DBPs in swimming pool water were 1-2 orders of magnitude higher than that in source water.Lifetime cancer and non-cancer risks of DBPs stemming from swimming pool water were also estimated.Inhalation and dermal exposure were the most significant exposure routes related to swimming pool DBP cancer and non-cancer risks.For the first time,buccal and aural exposure were considered,and were proven to be important routes of DBP exposure (accounting for 17.9%-38.9%of total risk).The cancer risks of DBPs for all swimmers were higher than 10^(-6)of lifetime exposure risk recommended by United States Environmental Protection Agency,and the competitive adult swimmers experienced the highest cancer risk (7.82×10^(-5)).These findings provide important information and perspectives for future efforts to lower the health risks associated with exposure to DBPs in swimming pool water. 展开更多
关键词 Health risk assessment Swimming pool water disinfection byproducts Multiple exposure pathway
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饮用水中高分子量消毒副产物的检测识别方法
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作者 韩亮亮 赵佳焱 +5 位作者 李梦媛 董慧峪 楚文海 周庆 施鹏 潘旸 《环境化学》 CAS CSCD 北大核心 2024年第1期160-173,共14页
消毒是饮用水处理过程中的重要步骤,但普遍采用的氯系消毒剂在杀灭细菌病毒的同时,能产生大量具有“三致”效应的卤代消毒副产物(DBPs),严重威胁了饮用水的化学安全.研究人员已在饮用水中陆续检测并识别出700多种DBPs,但这些已知DBPs均... 消毒是饮用水处理过程中的重要步骤,但普遍采用的氯系消毒剂在杀灭细菌病毒的同时,能产生大量具有“三致”效应的卤代消毒副产物(DBPs),严重威胁了饮用水的化学安全.研究人员已在饮用水中陆续检测并识别出700多种DBPs,但这些已知DBPs均为分子量小于800 Da的低分子量DBPs,目前对高分子量DBPs的认识还较为有限.本研究建立了基于基质辅助激光解吸电离飞行时间质谱(MALDI-TOF MS)的高分子量DBPs检测方法,发现在基质为2,5-二羟基苯甲酸,阳离子化试剂为三氟乙酸钠,使用三明治法点靶,反射-正离子模式,90%激光强度时,信噪比和信号重现性达到最优,信噪比之和达到了136.2,变异系数(CV)则为4.77%.利用上述方法,在模拟饮用水中检测到5种新的高分子量DBPs.在此基础上,通过同位素模式分析、TOF/TOF串联质谱和数据库验证,建立了针对未知高分子量DBPs的分子式/结构式识别方法,确定新的高分子量DBPs为寡糖羧酸类物质. 展开更多
关键词 高分子量消毒副产物 基质辅助激光解吸电离飞行时间质谱 阳离子化试剂 检测 识别
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生物炭对径流雨水中溶解性有机物的去除研究
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作者 张瑞华 段友丽 楚文海 《给水排水》 CSCD 北大核心 2024年第1期22-31,共10页
径流雨水中的大量溶解性有机物(DOM)可通过城市雨水系统进入自然水体,导致水体出现富营养化和黑臭现象,并可能在后续水处理消毒工艺中与消毒剂反应生成具有三致特性的消毒副产物(DBPs)。研究选用生物炭为吸附剂,并通过酸碱改性,探究其... 径流雨水中的大量溶解性有机物(DOM)可通过城市雨水系统进入自然水体,导致水体出现富营养化和黑臭现象,并可能在后续水处理消毒工艺中与消毒剂反应生成具有三致特性的消毒副产物(DBPs)。研究选用生物炭为吸附剂,并通过酸碱改性,探究其对径流雨水中DOM的吸附效能。结果表明,竹子类生物炭对水样中的DOM具有优良的吸附去除效果,经KOH改性后的竹子生物炭吸附性能大大提升;其对溶解性有机碳(DOC)和溶解性有机氮(DON)的去除率分别为63.1%和79.9%,对DBPs前体物的去除率高达63.2%。荧光光谱分析结果表明,与未落地雨水成分不同,径流雨水的DOM荧光成分较为复杂,荧光响应强度依次为腐殖酸类、富里酸类、可溶性微生物产物类、芳香性类蛋白Ⅱ和芳香性类蛋白Ⅰ物质。经竹子类生物炭吸附处理后,腐殖酸类和芳香性类蛋白物质的响应值大大下降,是削减DBPs前体物的关键。改性增加了生物炭的比表面积、孔结构和官能团,推测吸附机理有空隙填充作用、氢键作用、疏水相互作用和π-π相互作用。总之,竹子类生物炭在快速削减城市径流雨水污染负荷方面具有低成本和高效率的优点。 展开更多
关键词 生物炭 径流雨水 消毒副产物 溶解性有机物
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重庆市饮水中亚氯酸盐和氯酸盐空间分布特征及水质风险
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作者 柳沁伶 张琦 蒋祎 《环境卫生学杂志》 2024年第4期350-355,366,共7页
目的分析2019—2021年重庆市使用二氧化氯消毒的饮用水中亚氯酸盐和氯酸盐的空间分布特征及水质风险,探讨影响亚氯酸盐和氯酸盐分布的因素。方法采用二氧化氯消毒副产物水质风险指数法和空间相关性分析对重庆市12135份生活饮用水中亚氯... 目的分析2019—2021年重庆市使用二氧化氯消毒的饮用水中亚氯酸盐和氯酸盐的空间分布特征及水质风险,探讨影响亚氯酸盐和氯酸盐分布的因素。方法采用二氧化氯消毒副产物水质风险指数法和空间相关性分析对重庆市12135份生活饮用水中亚氯酸盐和氯酸盐空间分布特征与水质风险进行评价。结果亚氯酸盐检出率为75.48%(9159/12135),超标率为5.70%,中位数为0.14 mg/L,检出范围为ND~13.9 mg/L;氯酸盐检出率为75.07%(9110/12135),超标率为6.39%,中位数为0.15 mg/L,检出范围为ND~14.71 mg/L;亚氯酸盐和氯酸盐水质风险较高的区域主要集中在重庆北部和西部,与2019年相比,2021年水质状况有所改善,但东北和东南部的个别区县出现恶化。亚氯酸盐和氯酸盐水质风险指数存在区域聚集性,高-高聚集区主要分布在重庆西部地区。结论2019—2021年重庆市生活饮用水中亚氯酸盐和氯酸盐污染状况总体较好,但北部和西部部分地区水质风险指数较高。 展开更多
关键词 氯酸盐 亚氯酸盐 消毒副产物 空间自相关 水质评价
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Degradation of iopamidol in the permanganate/sulfite process:Evolution of iodine species and effect on the subsequent formation of disinfection by-products
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作者 Yimin Lin Hongyu Dong +3 位作者 Yating Zhu Gongming Zhou Junlian Qiao Xiaohong Guan 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2024年第1期345-352,共8页
Permanganate/sulfite(Mn(VII)/S(IV))process is a promising pre-oxidation technology for sequestering the emerging organic contaminants in drinking water treatment plant.Iopamidol(IPM),a representative of iodinated X-ra... Permanganate/sulfite(Mn(VII)/S(IV))process is a promising pre-oxidation technology for sequestering the emerging organic contaminants in drinking water treatment plant.Iopamidol(IPM),a representative of iodinated X-ray contrast media,has been widely detected in water sources and has the risk of forming iodinated disinfection byproducts(I-DBPs)in water treatment system.In this study,we investigated the evolution of iodine species during the IPM degradation by the Mn(VII)/S(IV)process and its effect on the subsequent formation of I-DBPs during chlorination at pH 7.0 and 8.0.IPM could be effectively degraded in the Mn(VII)/S(IV)process at environmentally relevant pH(pH 7.0 and 8.0).The results of quenching and competitive oxidation kinetic experiments revealed that SO^(·-)_(4)was the major reactive oxidizing species contributing to the degradation of IPM whereas the contributions of HO·and reactive manganese species were negligible in the Mn(VII)/S(IV)process.I–and IO–3were generated while no HOI was detected during the degradation of IPM in the Mn(VII)/S(IV)process.The effects of IPM oxidation by Mn(VII)/S(IV)on the subsequent formation of chlorinated disinfection by-products(Cl-DBPs)during chlorination were related to the category of Cl-DBPs.The pre-oxidation of IPM by Mn(VII)/S(IV)resulted in the generation of I-DBPs during the disinfection process although no I-DBPs were detected if no pre-oxidation was applied.The finding of this study suggested that attention should be paid to the toxicity of DBPs when water containing iodinated organic contaminants is treated by Mn(VII)/S(IV)process or other pre-oxidation technologies. 展开更多
关键词 Permanganate/sulfite IOPAMIDOL Sulfate radical Iodinated disinfection byproducts PRE-OXIDATION
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Effect of ferric and bromide ions on the formation and speciation of disinfection byproducts during chlorination 被引量:9
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作者 Shaogang Liu Zhiliang Zhu +1 位作者 Yanling Qiu Jianfu Zhao 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2011年第5期765-772,共8页
The effects of ferric ion, pH, and bromide on the formation and distribution of disinfection byproducts (DBPs) during chlorination were studied. Two raw water samples from Huangpu River and Yangtze River, two typica... The effects of ferric ion, pH, and bromide on the formation and distribution of disinfection byproducts (DBPs) during chlorination were studied. Two raw water samples from Huangpu River and Yangtze River, two typical drinking water sources of Shanghai, were used for the investigation. Compared with the samples from Huangpu River, the raw water samples from Yangtze River had lower content of total organic carbon (TOC) and ferric ions, but higher bromide concentrations. Under controlled chlorination conditions, four trihalomethanes (THMs), nine haloacetic acids (HAAs), total organic halogen (TOX) and its halogen species fractions, including total organic chlorine (TOC1) and total organic bromide (TOBr), were determined. The results showed that co-existent ferric and bromide ions significantly promoted the formation of total THMs and HAAs for both raw water samples. Higher concentration of bromide ions significantly changed the speciation of the formed THMs and HAAs. There was an obvious shift to brominated species, which might result in a more adverse influence on the safety of drinking water. The results also indicated that high levels of bromide ions in raw water samples produced higher percentages of unknown TOBr. 展开更多
关键词 disinfection byproducts total organic halogen CHLORINATION ferric ion bromide ion
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Disinfection byproducts in drinking water and regulatory compliance: A critical review 被引量:8
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作者 Xiaomao WANG Yuqin MAO +2 位作者 Shun TANG Hongwei YANG Yuefeng E XIE 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2015年第1期3-15,共13页
Disinfection by-products (DBPs) are regulated in drinking water in a number of countries. This critical review focuses on the issues associated with DBP regulatory compliance, including methods for DBP analysis, occ... Disinfection by-products (DBPs) are regulated in drinking water in a number of countries. This critical review focuses on the issues associated with DBP regulatory compliance, including methods for DBP analysis, occurrence levels, the regulation comparison among various countries, DBP compliance strategies, and emerging DBPs. The regulation comparison between China and the United States (US) indicated that the DBP regulations in China are more stringent based on the number of regulated compounds and maximum levels. The comparison assessment using the Information Collection Rule (ICR) database indicated that the compliance rate of 500 large US water plants under the China regulations is much lower than that under the US regulations (e.g. 62.2% versus 89.6% for total trihalomethanes). Precursor removal and alternative disinfectants are common practices for DBP regulatory compliance. DBP removal after formation, including air stripping for trihalomethane removal and biodegradation for haloacetic acid removal, have gained more acceptance in DBP control. Formation of emerging DBPs, including iodinated DBPs and nitrogenous DBPs, is one of unintended consequences of precursor removal and alternative disinfection. At much lower levels than carbonaceous DBPs, however, emerging DBPs have posed higher health risks. 展开更多
关键词 disinfection byproducts (DBPs) drinkingwater standards regulatory compliance alternative disinfection information collection rule (ICR) emerging DBPs
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Formation of disinfection byproducts in typical Chinese drinking water 被引量:7
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作者 Wenbo Liu Yanmei Zhao +1 位作者 Christopher WK Chow Dongsheng Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2011年第6期897-903,共7页
Eight typical drinking water supplies in China were selected in this study.Both source and tap water were used to investigate the occurrence of chlorinated disinfection byproducts(DBPs),and seasonal variation in the... Eight typical drinking water supplies in China were selected in this study.Both source and tap water were used to investigate the occurrence of chlorinated disinfection byproducts(DBPs),and seasonal variation in the concentrations of trihalomethanes(THMs) of seven water sources was compared.The results showed that the pollution level for source water in China,as shown by DBP formation potential,was low.The most encountered DBPs were chloroform,dichloroacetic acid,trichloroacetic acid,and chlorodibromoacetic acid.The concentration of every THMs and haloacetic acid(HAA) compound was under the limit of standards for drinking water quality.The highest total THMs concentrations were detected in spring. 展开更多
关键词 disinfection byproducts (DBPs) haloacetic acids TRIHALOMETHANES
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Formation and control of disinfection byproducts and toxicity during reclaimed water chlorination: A review 被引量:17
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作者 Ye Du Xiao-Tong Lv +4 位作者 Qian-Yuan Wu Da-Yin Zhang Yu-Ting Zhou Lu Peng Hong-Ying Hu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第8期51-63,共13页
Chlorination is essential to the safety of reclaimed water; however, this process leads to concern regarding the formation of disinfection byproducts(DBPs) and toxicity. This study reviewed the formation and control... Chlorination is essential to the safety of reclaimed water; however, this process leads to concern regarding the formation of disinfection byproducts(DBPs) and toxicity. This study reviewed the formation and control strategies for DBPs and toxicity in reclaimed water during chlorination.Both regulated and emerging DBPs have been frequently detected in reclaimed water during chlorination at a higher level than those in drinking water, indicating they pose a greater risk to humans. Luminescent bacteria and Daphnia magna acute toxicity, anti-estrogenic activity and cytotoxicity generally increased after chlorination because of the formation of DBPs. Genotoxicity by umu-test and estrogenic activity were decreased after chlorination because of destruction of toxic chemicals. During chlorination, water quality significantly impacted changes in toxicity.Ammonium tended to attenuate toxicity changes by reacting with chlorine to form chloramine,while bromide tended to aggravate toxicity changes by forming hypobromous acid. During pretreatment by ozonation and coagulation, disinfection byproduct formation potential(DBPFP)and toxicity formation potential(TFP) occasionally increase, which is accompanied by DOC removal; thus, the decrease of DOC was limited to indicate the decrease of DBPFP and TFP. It is more important to eliminate the key fraction of precursors such as hydrophobic acid and hydrophilic neutrals. During chlorination, toxicities can increase with the increasing chlorine dose and contact time. To control the excessive toxicity formation, a relatively low chlorine dose and short contact time were required. Quenching chlorine residual with reductive reagents also effectively abated the formation of toxic compounds. 展开更多
关键词 Reclaimed water Chlorination disinfection byproducts Toxicity Precursor
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Formation and speciation of disinfection byproducts during chlor(am)ination of aquarium seawater 被引量:2
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作者 Haiting Zhang Huiyu Dong +3 位作者 Craig Adams Zhimin Qiang Gang Luan Lei Wang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2015年第7期116-124,共9页
The chemistry associated with the disinfection of aquarium seawater is more complicated than that of freshwater, therefore limited information is available on the formation and speciation of disinfection byproducts(D... The chemistry associated with the disinfection of aquarium seawater is more complicated than that of freshwater, therefore limited information is available on the formation and speciation of disinfection byproducts(DBPs) in marine aquaria. In this study, the effects of organic precursors, bromide(Br-) and pre-ozonation on the formation and speciation of several typical classes of DBPs, including trihalomethanes(THM4), haloacetic acids(HAAs),iodinated trihalomethanes(I-THMs), and haloacetamides(HAc Ams), were investigated during the chlorination/chloramination of aquarium seawater. Results indicate that with an increase in dissolved organic carbon concentration from 4.5 to 9.4 mg/L, the concentrations of THM4 and HAAs increased by 3.2-7.8 times under chlorination and by 1.1-2.3 times under chloramination. An increase in Br-concentration from 3 to 68 mg/L generally enhanced the formation of THM4, I-THMs and HAc Ams and increased the bromine substitution factors of all studied DBPs as well, whereas it impacted insignificantly on the yield of HAAs. Pre-ozonation with 1 mg/L O3 dose substantially reduced the formation of all studied DBPs in the subsequent chlorination and I-THMs in the subsequent chloramination. Because chloramination produces much lower amounts of DBPs than chlorination, it tends to be more suitable for disinfection of aquarium seawater. 展开更多
关键词 disinfection byproducts CHLORINATION CHLORAMINATION PRE-OZONATION Bromine substitution factorAquarium seawater
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Disinfection byproducts and halogen-specific total organic halogen speciation in chlorinated source waters——The impact of iopamidol and bromide 被引量:2
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作者 Nana Osei B.Ackerson Hannah K.Liberatore +3 位作者 Michael J.Plewa Susan D.Richardson Thomas A.Ternes Stephen E.Duirk 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2020年第3期90-101,共12页
This study investigated the speciation of halogen-specific total organic halogen and disinfection byproducts(DBPs) upon chlorination of natural organic matter(NOM) in the presence of iopamidol and bromide(Br^-).Experi... This study investigated the speciation of halogen-specific total organic halogen and disinfection byproducts(DBPs) upon chlorination of natural organic matter(NOM) in the presence of iopamidol and bromide(Br^-).Experiments were conducted with low bromide source waters with different NOM characteristics from Northeast Ohio,USA and varied spiked levels of bromide(2-30 μmol/L) and iopamidol(1-5 μmol/L).Iopamidol was found to be a direct precursor to trihalomethane(THM) and haloacetic acid formation,and in the presence of Br^-favored brominated analogs.The concentration and speciation of DBPs formed were impacted by iopamidol and bromide concentrations,as well as the presence of NOM.As iopamidol increased the concentration of iodinated DBPs(iodo-DBPs) and THMs increased.However,as Br^-concentrations increased,the concentrations of nonbrominated iodo-and chloro-DBPs decreased while brominated-DBPs increased.Regardless of the concentration of either iopamidol or bromide,bromochloroiodomethane(CHBrClI) was the most predominant iodo-DBP formed except at the lowest bromide concentration studied.At relevant concentrations of iopamidol(1 μmol/L) and bromide(2 μmol/L),significant quantities of highly toxic iodinated and brominated DBPs were formed.However,the rapid oxidation and incorporation of bromide appear to inhibit iodoDBP formation under conditions relevant to drinking water treatment. 展开更多
关键词 IOPAMIDOL TOTAL ORGANIC halogen(TOX) disinfection byproducts(DBPs) Chlorine Natural ORGANIC matter(NOM) pH
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Chloramination of wastewater effluent: Toxicity and formation of disinfection byproducts 被引量:8
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作者 Julien Le Roux Michael J.Plewa +3 位作者 Elizabeth D.Wagner Maolida Nihemaiti Azra Dad Jean-Philippe Croué 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第8期135-145,共11页
The reclamation and disinfection of waters impacted by human activities(e.g., wastewater effluent discharges) are of growing interest for various applications but has been associated with the formation of toxic nitr... The reclamation and disinfection of waters impacted by human activities(e.g., wastewater effluent discharges) are of growing interest for various applications but has been associated with the formation of toxic nitrogenous disinfection byproducts(N-DBPs). Monochloramine used as an alternative disinfectant to chlorine can be an additional source of nitrogen in the formation of N-DBPs. Individual toxicity assays have been performed on many DBPs, but few studies have been conducted with complex mixtures such as wastewater effluents. In this work, we compared the cytotoxicity and genotoxicity of wastewater effluent organic matter(Ef OM) before and after chloramination. The toxicity of chloraminated Ef OM was significantly higher than the toxicity of raw Ef OM, and the more hydrophobic fraction(HPO)isolated on XAD-8 resin was more toxic than the fraction isolated on XAD-4 resin.More DBPs were also isolated on the XAD-8 resin. N-DBPs(i.e., haloacetonitriles or haloacetamides) were responsible for the majority of the cytotoxicity estimated from DBP concentrations measured in the XAD-8 and XAD-4 fractions(99.4% and 78.5%, respectively).Measured DBPs accounted for minor proportions of total brominated and chlorinated products, which means that many unknown halogenated compounds were formed and can be responsible for a significant part of the toxicity. Other non-halogenated byproducts(e.g.,nitrosamines) may contribute to the toxicity of chloraminated effluents as well. 展开更多
关键词 disinfection byproducts Chloramination Toxicity Wastewater XAD resins Haloacetonitriles Haloacetamides
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Whole pictures of halogenated disinfection byproducts in tap water from China's cities 被引量:2
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作者 Yang PAN Xiangru ZHANG Jianping ZHAI 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2015年第1期121-130,共10页
When bromide/iodide is present in source water, hypobromous acid/hypoiodous acid will be formed with addition of chlorine, chloramine, or other disinfectants. Hypobromous acid/hypoiodous acid undergoes reactions with ... When bromide/iodide is present in source water, hypobromous acid/hypoiodous acid will be formed with addition of chlorine, chloramine, or other disinfectants. Hypobromous acid/hypoiodous acid undergoes reactions with natural organic matter in source water to form numerous brominated/iodinated disinfection byproducts (DBPs). In this study, tap water samples were collected from eight cities in China. With the aid of electrospray ionization-triple quadrupole mass spectrometry by setting precursor ion scans of m/z 35, m/z 81, and m/z 126.9, whole pictures of polar chlorinated, brominated, and iodinated DBPs in the tap water samples were revealed for the first time. Numerous polar halogenated DBPs were detected, including haloacetic acids, newly identified halogenated phenols, and many new/unknown halogenated compounds. Total organic chlorine, total organic bromine, and total organic iodine were also measured to indicate the total levels of all chlorinated, brominated, and iodinated DBPs in the tap water samples. The total organic chlorine concentrations ranged from 26.8 to 194.0 μg· L 1 as Cl, with an average of 109.2 μg·L-1 as Cl; the total organic bromine concentrations ranged from below detection limit to 113.3 μg·L-1 as Br, with an average of 34.7 μg·L-1 as Br; the total organic iodine concentrations ranged from below detection limit to 16.4 μg· L-1 as I, with an average of 9.1 μg· L-1 as I; the total organic halogen concentrations ranged from 31.3 to 220.4 μg·L-1 as Cl, with an average of 127.2 μg· L- 1 as Cl. 展开更多
关键词 disinfection byproducts (DBPs) total organichalogen tap water in China
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New methods for identification of disinfection byproducts of toxicological relevance: Progress and future directions 被引量:3
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作者 Nicholas J.P.Wawryk Caley B.Craven +1 位作者 Lindsay K.Jmaiff Blackstock Xing-Fang Li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2021年第1期151-159,共9页
Disinfection byproducts(DBPs)represent a ubiquitous source of chemical exposure in disinfected water.While over 700 DBPs have been identified,the drivers of toxicity remain poorly understood.Additionally,ever evolving... Disinfection byproducts(DBPs)represent a ubiquitous source of chemical exposure in disinfected water.While over 700 DBPs have been identified,the drivers of toxicity remain poorly understood.Additionally,ever evolving water treatment practices have led to a continually growing list of DBPs.Advancement of analytical technologies have enabled the identification of new classes of DBPs and the quantification of these chemically diverse sets of DBPs.Here we summarize advances in new workflows for DBP analysis,including sample preparation,chromatographic separation with mass spectrometry(MS)detection,and data processing.To aid in the selection of techniques for future studies,we discuss necessary considerations for each step in the strategy.This review focuses on how each step of a workflow can be optimized to capture diverse classes of DBPs within a single method.Additionally,we highlight new MS-based approaches that can be powerful for identifying novel DBPs of toxicological relevance.We discuss current challenges and provide perspectives on future research directions with respect to studying new DBPs of toxicological relevance.As analytical technologies continue to advance,new strategies will be increasingly used to analyze complex DBPs produced in different treatment processes with the aim to identify potential drivers of toxicity. 展开更多
关键词 Water disinfection byproducts(DBPs) Emerging contaminants Mass spectrometry CHROMATOGRAPHY Nontargeted analysis Toxicity drivers
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Effects of halobenzoquinone and haloacetic acid water disinfection byproducts on human neural stem cells 被引量:7
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作者 Katherine Z.Fu Jinhua Li +2 位作者 Sai Vemula Birget Moe Xing-Fang Li 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第8期239-249,共11页
Human neural stem cells(h NSCs) are a useful tool to assess the developmental effects of various environmental contaminants; however, the application of h NSCs to evaluate water disinfection byproducts(DBPs) is sc... Human neural stem cells(h NSCs) are a useful tool to assess the developmental effects of various environmental contaminants; however, the application of h NSCs to evaluate water disinfection byproducts(DBPs) is scarce. Comprehensive toxicological results are essential to the prioritization of DBPs for further testing and regulation. Therefore, this study examines the effects of DBPs on the proliferation and differentiation of h NSCs. Prior to DBP treatment, characteristic protein markers of h NSCs from passages 3 to 6 were carefully examined and it was determined that h NSCs passaged 3 or 4 times maintained stem cell characteristics and can be used for DBP analysis. Two regulated DBPs, monobromoacetic acid(BAA) and monochloroacetic acid(CAA), and two emerging DBPs, 2,6-dibromo-1,4-benzoquinone(2,6-DBBQ) and 2,6-dichloro-1,4-benzoquinone(2,6-DCBQ), were chosen for h NSC treatment. Both 2,6-DBBQ and 2,6-DCBQ induced cell cycle arrest at S-phase at concentrations up to 1 μmol/L. Comparatively, BAA and CAA at 0.5 μmol/L affected neural differentiation. These results suggest DBP-dependent effects on h NSC proliferation and differentiation. The DBP-induced cell cycle arrest and inhibition of normal h NSC differentiation demonstrate the need to assess the developmental neurotoxicity of DBPs. 展开更多
关键词 disinfection byproducts Human neural stem cells Differentiation Halobenzoquinones Haloacetic acids Cell cycle arrest
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Formation of regulated and unregulated disinfection byproducts during chlorination and chloramination: Roles of dissolved organic matter type, bromide, and iodide 被引量:2
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作者 Yunsi Liu Keqiang Liu +2 位作者 Michael J.Plewa Tanju Karanfil Chao Liu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第7期151-160,共10页
Algal blooms and wastewater effluents can introduce algal organic matter(AOM) and effluent organic matter(Ef OM) into surface waters, respectively. In this study, the impact of bromide and iodide on the formation of h... Algal blooms and wastewater effluents can introduce algal organic matter(AOM) and effluent organic matter(Ef OM) into surface waters, respectively. In this study, the impact of bromide and iodide on the formation of halogenated disinfection byproducts(DBPs) during chlorination and chloramination from various types of dissolved organic matter(DOM, e.g., natural organic matter(NOM), AOM, and Ef OM) were investigated based on the data collected from literature. In general, higher formation of trihalomethanes(THMs) and haloacetic acids(HAAs) was observed in NOM than AOM and Ef OM, indicating high reactivities of phenolic moieties with both chlorine and monochloramine. The formation of haloacetaldehydes(HALs), haloacetonitriles(HANs) and haloacetamides(HAMs) was much lower than THMs and HAAs. Increasing initial bromide concentrations increased the formation of THMs, HAAs, HANs, and HAMs, but not HALs. Bromine substitution factor(BSF) values of DBPs formed in chlorination decreased as specific ultraviolet absorbance(SUVA) increased. AOM favored the formation of iodinated THMs(I-THMs) during chloramination using preformed chloramines and chlorination-chloramination processes. Increasing prechlorination time can reduce the I-THM concentrations because of the conversion of iodide to iodate, but this increased the formation of chlorinated and brominated DBPs. In an analogous way, iodine substitution factor(ISF) values of I-THMs formed in chloramination decreased as SUVA values of DOM increased. Compared to chlorination, the formation of noniodinated DBPs is low in chloramination. 展开更多
关键词 disinfection byproducts Natural organic matter Algal organic matter Effluent organic matter BROMIDE IODIDE CHLORINATION CHLORAMINATION
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Identification of unknown disinfection byproducts in drinking water produced from Taihu Lake source water 被引量:1
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作者 Jiabao Li Haifeng Zhang +3 位作者 Juan Wang Zhiyong Yu Hongyan Li Min Yang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第3期1-11,共11页
Although disinfection byproducts(DBPs) in drinking water have been suggested as a cancer causing factor, the causative compounds have not yet been clarified. In this study, we used liquid chromatography quadrupole-tim... Although disinfection byproducts(DBPs) in drinking water have been suggested as a cancer causing factor, the causative compounds have not yet been clarified. In this study, we used liquid chromatography quadrupole-time-of-flight spectrometry(LC-QTOF MS) to identify the unknown disinfection byproducts(DBPs) in drinking water produced from Taihu Lake source water, which is known as a convergence point for the anthropogenic pollutants discharged from intensive industrial activities in the surrounding regions. In total, 91 formulas of DBPs were discovered through LC-QTOF MS nontarget screen, 81 of which have not yet been reported. Among the 91 molecules, 56 only contain bromine, 15 only contain chlorine and 20 DBPs have both bromine and chlorine atoms. Finally, five DBPs including 2,4,6-tribromophenol, 2,6-dibromo-4-chlorophenol, 2,6-dichloro-4-bromophenol, 4-bromo-2,6-di-tert-butylphenol and 3,6-dibromocarbazole were confirmed using standards. The former three compounds mainly formed in the predisinfection step(maximum concentration, 0.2-2.6 μg/L), while the latter two formed in the disinfection step(maximum concentration, 18.2-33.6 ng/L). In addition, 19 possible precursors of the discovered DBPs were detected, with the aromatic compounds being a major group. 2,6-di-tert-butylphenol as the precursor of 4-bromo-2,6-di-tert-butylphenol was confirmed with standard, with a concentration of 20.3 μg/L in raw water. The results of this study show that brominated DBPs which are possibly formed from industrial pollutants are relevant DBP species in drinking water produced form Taihu source water, suggesting protection of Taihu Lake source water is important to control the DBP risks. 展开更多
关键词 Source water disinfection byproducts Brominated disinfection byproducts Nontarget analysis Precursors Source water pollution
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