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Peptide bonds affect the formation of haloacetamides an emerging class of N-DBPs in drinking water: free amino acids versus oligopeptides

机译:肽键会影响卤代乙酰胺的形成卤代乙酰胺是饮用水中一种新兴的N-DBPs:游离氨基酸与寡肽

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摘要

Haloacetamides (HAcAms), an emerging class of nitrogenous disinfection by-products (N-DBPs) of health concern, have been frequently identified in drinking waters. It has long been appreciated that free amino acids (AAs), accounting for a small fraction of the dissolved organic nitrogen (DON) pool, can form dichloroacetamide (DCAcAm) during chlorination. However, the information regarding the impacts of combined AAs, which contribute to the greatest identifiable DON portion in natural waters, is limited. In this study, we compared the formation of HAcAms from free AAs (tyrosine [Tyr] and alanine [Ala]) and combined AAs (Tyr-Ala, Ala-Tyr, Tyr-Tyr-Tyr, Ala-Ala-Ala), and found that HAcAm formation from the chlorination of AAs in combined forms (oligopeptides) significantly exhibited a different pattern with HAcAm formation from free AAs. Due to the presence of peptide bonds in tripeptides, Tyr-Tyr-Tyr and Ala-Ala-Ala produced trichloroacetamide (TCAcAm) in which free AAs was unable to form TCAcAm during chlorination. Moreover, peptide bond in tripeptides formed more tri-HAcAms than di-HAcAms in the presence of bromide. Therefore, the peptide bond may be an important indicator to predict the formation of specific N-DBPs in chlorination. The increased use of algal- and wastewater-impacted water as drinking water sources will increase health concerns over exposure to HAcAms in drinking water.
机译:卤乙酰胺(HAcAms)是一种与健康有关的新兴的含氮消毒副产物(N-DBPs),已在饮用水中被频繁鉴定出来。长期以来,人们认识到,占溶解有机氮(DON)库很小一部分的游离氨基酸(AAs)在氯化过程中会形成二氯乙酰胺(DCAcAm)。但是,有关组合AA的影响的信息是有限的,而AA的影响在天然水中占最大的DON含量。在这项研究中,我们比较了由游离AA(酪氨酸[Tyr]和丙氨酸[Ala])和组合AA(Tyr-Ala,Ala-Tyr,Tyr-Tyr-Tyr,Ala-Ala-Ala)和HAcAms的形成,以及研究人员发现,氯化AA以组合形式(寡肽)氯化生成HAcAm的方式与游离AA形成HAcAm的方式明显不同。由于三肽中存在肽键,Tyr-Tyr-Tyr和Ala-Ala-Ala生成了三氯乙酰胺(TCAcAm),其中游离AA在氯化过程中无法形成TCAcAm。此外,在存在溴化物的情况下,三肽中的肽键形成的di-HAcAms多于tri-HAcAms。因此,肽键可能是预测氯化中特定N-DBPs形成的重要指标。受藻类和废水影响的水越来越多地用作饮用水源,这将增加人们对饮用水中接触HAcAms的健康担忧。

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