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Role of Chlorine Dioxide in N-Nitrosodimethylamine Formation from Oxidation of Model Amines

机译:二氧化氯在模型胺氧化中N-亚硝基二甲胺形成中的作用

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摘要

N-Nitrosodimethylamine (NDMA) is an emerging disinfection byproduct, and we show that use of chlorine dioxide (ClO2) has the potential to increase NDMA formation in waters containing precursors with hydrazine moieties. NDMA formation was measured after oxidation of 13 amines by monochloramine and ClO2 and pretreatment with ClO2 followed by postmonochloramination. Daminozide, a plant growth regulator, was found to yield 5.01 ± 0.96% NDMA upon reaction with ClO2, although no NDMA was recorded during chloramination. The reaction rate was estimated to be ∼0.0085 s–1, and on the basis of our identification by mass spectrometry of the intermediates, the reaction likely proceeds via the hydrolytic release of unsymmetrical dimethylhydrazine (UDMH), with the hydrazine structure a key intermediate in NDMA formation. The presence of UDMH was confirmed by gas chromatography–mass spectrometry analysis. For 10 of the 13 compounds, ClO2 preoxidation reduced NDMA yields compared with monochloramination alone, which is explained by our measured release of dimethylamine. This work shows potential preoxidation strategies to control NDMA formation may not impact all organic precursors uniformly, so differences might be source specific depending upon the occurrence of different precursors in source waters. For example, daminozide is a plant regulator, so drinking water that is heavily influenced by upstream agricultural runoff could be at risk.
机译:N-亚硝基二甲胺(NDMA)是新兴的消毒副产物,我们证明了使用二氧化氯(ClO2)可能会增加含肼部分前体的水中NDMA的形成。在单氯胺和ClO2氧化13种胺并先用ClO2进行预处理,然后进行后一氯胺化后,测量NDMA的形成。尽管在氯化过程中未记录到NDMA,但发现一种达莫嗪(Daminozide)是一种植物生长调节剂,与ClO2反应后可产生5.01±0.96%的NDMA。据估计,反应速度约为0.0085 s-1,根据我们对中间体的质谱鉴定,该反应很可能是通过不对称二甲基肼(UDMH)的水解释放而进行的,肼结构是其中的关键中间体。 NDMA的形成。通过气相色谱-质谱分析法确认了UDMH的存在。对于13种化合物中的10种,与单独的单氯化相比,ClO2的预氧化降低了NDMA的产率,这可以通过我们测得的二甲胺释放来解释。这项工作表明,控制NDMA形成的潜在预氧化策略可能不会均匀地影响所有有机前体,因此差异可能取决于来源,具体取决于源水中不同前体的出现。例如,达米嗪是一种植物调节剂,因此受到上游农业径流严重影响的饮用水可能会面临危险。

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