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31.
In the race to deliver clean water to communities through potable water reuse, disinfection and water quality assessment are and will continue to be fundamental factors. There are over 700 disinfection byproducts (DBPs) in water; evaluating each compound is practically impossible and very time consuming. A bioanalytical approach could be an answer to this challenge. In this work, the response of four major classes of DBPs toward mitochondrial membrane potential (ΔΨm) and cytoplasmic adenosine triphosphate (C-ATP) was investigated with human carcinoma (HepG2) cells. Within 90 min of cell exposure, only the haloacetic acid (HAA) mixture caused a cytotoxic response as measured by C-ATP. All four groups (haloacetonitriles (HANs), trihalomethanes (THMs), nitrosamines (NOAs), and HAAs) responded well to ΔΨm, R2 > 0.70. Based on the half-maximum concentration that evoked a 50% response in ΔΨm, the response gradient was HANs >> HAAs ∼ THM > NOAs. The inhibition of the ΔΨm by HANs is driven by dibromoacetonitrile (DBAN), while dichloroacetonitrile (DCAN) did not cause a significant change in the ΔΨm at less than 2000 µM. A mixture of HANs exhibited an antagonistic behavior on the ΔΨm compared to individual compounds. If water samples are concentrated to increase HAN concentrations, especially DBAN, then ΔΨm could be used as a biomonitoring tool for DBP toxicity.  相似文献   
32.
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 surroundi...  相似文献   
33.
本文对含放射性、氟化物、苯并(α)芘、硫酸盐、铁锰等超标复杂矿井水进行了试验研究,得出:在一定条件下用曝气、配水、混凝沉淀、过滤消毒等常规净水措施处理生活饮用水达标是可行的。  相似文献   
34.
When adding sufficient chlorine to achieve breakpoint chlorination to source water containing high concentration of ammonia during drinking water treatment, high concentrations of disinfection by-products(DBPs) may form. If N-nitrosamine precursors are present, highly toxic N-nitrosamines, primarily N-nitrosodimethylamine(NDMA), may also form. Removing their precursors before disinfection should be a more effective way to minimize these DBPs formation. In this study, zeolites and activated carbon were examined for ammonia and N-nitrosamine precursor removal when incorporated into drinking water treatment processes.The test results indicate that Mordenite zeolite can remove ammonia and five of seven N-nitrosamine precursors efficiently by single step adsorption test. The practical applicability was evaluated by simulation of typical drinking water treatment processes using six-gang stirring system. The Mordenite zeolite was applied at the steps of lime softening, alum coagulation, and alum coagulation with powdered activated carbon(PAC) sorption. While the lime softening process resulted in poor zeolite performance, alum coagulation did not impact ammonia and N-nitrosamine precursor removal. During alum coagulation, more than67% ammonia and 70%–100% N-nitrosamine precursors were removed by Mordenite zeolite(except 3-(dimethylaminomethyl)indole(DMAI) and 4-dimethylaminoantipyrine(DMAP)). PAC effectively removed DMAI and DMAP when added during alum coagulation. A combination of the zeolite and PAC selected efficiently removed ammonia and all tested seven N-nitrosamine precursors(dimethylamine(DMA), ethylmethylamine(EMA), diethylamine(DEA), dipropylamine(DPA), trimethylamine(TMA), DMAP, and DMAI) during the alum coagulation process.  相似文献   
35.
The characteristics of dissolved organic matter (DOM) and bromide ion concentration have a significant influence on the formation of disinfection by-products (DBPs). In order to identify the main DBP precursors, DOM was divided into five fractions based on molecular weight (MW), trihalomethane formation potential and haloacetic acid formation potential were determined for fractions, and the change in contents of different fractions and total DBPs during treatment processes (pre-chlorination, coagulation, sand filtration, disinfection) were studied. Moreover, the relationship between bromide concentration and DBP generation characteristics in processes was also analyzed. The results showed that the main DBP precursors were the fraction with MW < 1 kDa and fraction with MW 3−10 kDa, and the DBP''s generation ability of lower molecular weight DOM (< 10 kDa) was higher than that of higher molecular weight DOM. During different processes, pre-chlorination and disinfection had limited effect on removing organics but could alter the MW distribution, and coagulation and filtration could effectively remove organics with higher MW. For DBPs, trihalomethanes (THMs) were mainly generated in pre-chlorination and disinfection, while haloacetic acids (HAAs) were mostly generated during pre-chlorination; coagulation and sand filtration had little effect on THMs but resulted in a slight removal of HAAs. In addition, the results of ANOVA tests suggested that molecular sizes and treatment processes have significant influence on DBP formation. With increasing bromide concentration, the brominated DBPs significantly increased, but the bromine incorporation factor in the processes was basically consistent at each concentration.  相似文献   
36.
对国内外饮用水中HANs类消毒副产物检测方法、生成的影响因素及毒理学试验的研究进展与现状进行了调查和分析,探讨了其存在于饮用水中可能导致的人体健康危害。结果表明,饮用水中HANs类消毒副产物普遍存在,而且HANs消毒副产物比常规消毒副产物(三卤甲烷、卤乙酸等)具有更强的三致效应、生殖发育毒性、基因和细胞毒性,通过饮水摄入人体,对健康造成潜在危害。HANs的检测、人体健康风险评价和控制是今后的研究重点。  相似文献   
37.
饮用水氯化消毒过程的动力学模型研究进展   总被引:2,自引:0,他引:2  
饮用水氯化消毒的安全性问题一直是水处理领域的研究重点,其氯化消毒过程动力学过程模型的建立,对于饮用水含氯量监测、评价及生成消毒副产物的控制具有重要意义。本文概述了饮用水氯化消毒过程的有关动力学模型研究现状及进展,从模型依据的机理和表达形式等方面分析了饮用水氯化消毒过程的动力学模型研究进展,介绍了广泛应用的几种模型,如Clark自由氯衰减模型、Valentine氯胺衰减模型等,通过对相关模型的原理、异同点、优缺点、适用性的对比及对影响模型的因素分析,对氯化消毒过程中动力学模型的今后发展趋势作了展望。  相似文献   
38.
罗妮娜 《环境科学学报》2016,36(6):2290-2296
以斑马鱼(Danio rerio)为试验生物,经淋巴细胞体外暴露试验,从细胞内源性凋亡角度,研究了饮用水消毒副产物—碘代乙酸诱导斑马鱼淋巴细胞损伤的致毒机理.结果表明,在碘代乙酸的环境浓度1μg·L-1下暴露24、36、48和96 h后,细胞凋亡率从对照组的3.52%分别增加到15.89%、22.47%、40.76%和52.13%,与对照组差异均为极显著(p0.01);线粒体膜电位分别较对照组下降了32.9%、50.1%、68.6%和81.5%,与对照组差异均为极显著(p0.01);细胞色素C的相对释放量分别增加了0.85、1.37、1.86和2.66倍,与对照组差异均为极显著(p0.01).暴露36、48和96 h后,Caspase-3酶活性分别增加了0.49、0.86和1.43倍,与对照组差异均为极显著(p0.01);Caspase-9酶活性分别增加了0.73、1.41和1.88倍,与对照组差异均为极显著(p0.01);抑制凋亡Bcl-2基因的相对表达量分别下降27.0%、35.3%和52.3%,与对照组差异均为极显著(p0.01);而促进凋亡的Bax基因相对表达量分别增加1.1、2.3和3.2倍,与对照组差异均为极显著(p0.01).碘代乙酸体外诱导斑马鱼淋巴细胞凋亡的可能机制是,线粒体膜电位的崩溃导致细胞色素C持续从线粒体中释放,进而引起细胞凋亡下游通路的变化;Bcl-2基因和Bax基因明显参与了对凋亡的调控.此外,Caspase-9酶的活化导致Caspase-3酶活化,最终引起细胞凋亡.  相似文献   
39.
廖雨枫  王正  潘旸  李爱民 《环境科学》2024,45(3):1561-1576
在水资源紧缺的当下,污水再生利用是一项重要的环保战略更是资源战略.消毒能有效杀灭病菌和阻断介水疾病的传播,是保障再生水用水安全的重要手段.然而,消毒剂会不可避免地与水中有机物发生反应形成具有毒害效应的消毒副产物.围绕污水在再生消毒过程中所产生的消毒副产物,针对其检测识别方法、生成条件(前体物、消毒工艺及水质条件对消毒副产物生成的影响)以及控制方法(源头控制、过程控制及末端控制)进行综述.在此基础上,对再生水消毒副产物的未来研究动态进行了探讨,可为保障再生水的安全利用提供依据.  相似文献   
40.
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.  相似文献   
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