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Application of Effect Directed Analysis to Identify Mutagenic Nitrogenous Disinfection Byproducts of Advanced Oxidation Drinking Water Treatment

机译:效应综合分析在先进氧化饮用水处理中鉴定突变氮素消毒副产品

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Advanced oxidation processes are important barriers for organic micropollutants (e.g., Pharmaceuticals, pesticides) in (drinking) water treatment. Studies have indicated that medium pressure (MP) UV/H2O2 treatment leads to a positive response in Ames mutagenicity tests, which is then removed after granulated activated carbon (GAC) filtration. The potentially mutagenic substances formed have been scarcely identified. Earlier research showed that many substances result from the reaction of photolysis products of nitrate with (photolysis products of) natural organic material (NOM). Using an innovative approach to trace the formation of disinfection byproducts (DBPs) of MP UV water treatment, based on stable isotope labeled nitrate combined with high resolution mass spectrometry, we showed that multiple nitrogen containing substances were formed in artificial water during MP UV treatment. Part of these DBPs were also detected in full scale water samples. In these samples, both chemical analysis and the Ames fluctuation test showed an increased response after MP UV/H2O2 treatment. For 14 DBPs the structure of the N-DPB was elucidated using in silico fragmentation tools and confirmed with analytical reference standards. Further identification of the detected N-DBPs, using effect directed analysis to pinpoint the source of the mutagenicity or individual testing of these substances in Ames tests, would provide more insight into the relation of the N-DBPs with the observed mutagenicity. To this end, fractions of MP UV treated and untreated water extracts were prepared using preparative HPLC. These fractions were each concentrated and tested in the Ames fluctuation test. In addition, high resolution mass spectrometry was performed in all fractions to assess the presence of N-DBPs. After evaluating the results, a correlation was observed between the detection of byproducts in the fractions and the mutagenic response. Based on toxicity data and read across analysis, we could indicate five N-DBPs that are potentially genotoxic and were present in relatively high concentrations in the fractions in which mutagenicity was observed. The results of this study offer opportunities to further evaluate the identity, potential health concern and relevance for full scale drinking water treatment plants and varying process conditions of N-DBPs formed during MP UV drinking water treatment.
机译:先进的氧化方法是(饮用)水处理的有机微污染物(例如药物,杀虫剂)的重要障碍。研究表明中压(MP)UV / H 2 O 2处理导致AME致突变试验中的阳性反应,然后在造粒活性炭(GAC)过滤后除去。形成的潜在致突变性的物质几乎没有识别。早期的研究表明,许多物质是由硝酸盐的光解产物与(光解产物)天然有机材料(NOM)的反应产生。利用创新方法追踪MP UV水处理的消毒副产物(DBPS)的形成,基于稳定同位素标记为硝酸盐结合高分辨率质谱,我们显示在MP UV处理期间在人造水中形成多种含氮物质。在满量程水样中也检测到这些DBP的一部分。在这些样品中,化学分析和AME波动试验都显示出MP UV / H 2 O 2处理后的响应增加。对于14 dbps,使用Silico碎片工具阐明N-DPB的结构,并通过分析参考标准证实。进一步鉴定检测到的N-DBPS,使用效果指向分析来确定突变性或对AMES测试中这些物质的单独测试的来源,将提供更多地洞察N-DBP与观察到的突变性的关系。为此,使用制备型HPLC制备MP UV处理和未处理的水提取物的级分。这些级分在ames波动试验中浓缩并测试。此外,在所有级分中进行高分辨率质谱法以评估N-DBPS的存在。在评估结果之后,在分数中的副产物和致突响应的副产物检测之间观察到相关性。基于毒性数据并综合分析,我们可以指示五种N-DBP,其潜在的遗传毒性,并且在观察到突变度的级分中存在相对高的浓度。本研究的结果提供了进一步评估全规模饮用水处理厂的身份,潜在健康问题和相关性的机会,以及在MP UV饮用水处理期间形成的N-DBP的不同工艺条件。

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