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Identification of novel disinfection byproducts in pool water: Chlorination of the algaecide benzalkonium chloride

机译:泳池水中新型消毒副产物的鉴定:杀菌灭藻剂苯扎氯铵的氯化

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摘要

The maintenance of public swimming pools requires numerous technological steps. One of the most important issues involves microbiological safety. Benzalkonium chloride (BAC) encompasses homologous alkylbenzyldimethylammonium chlorides with various alkyl chains, in particular C12 and C14, and is known as a popular algaecide for keeping water clean. In addition to BAC, NaOCl and UV-irradiation are also used to treat pool water as additional technological steps. Therefore, BAC itself can become a precursor of disinfection byproducts (DBPs). High-performance liquid chromatography - tandem mass spectrometry (HPLC-MS/MS), with accurate mass measurements, has allowed the discovery of several groups of DBPs that are related to BAC in public pool water in Arkhangelsk (Russia). These DBPs include numerous isomeric monochlorinated derivatives ([C21H37ClN](+) and [C23H41ClN](+)), hydroxyl derivatives ([C21H38NO](+) and [C23H42NO]), carbonyl ([C21H36NO](+) and [C23H40NO](+)), and dicarbonyl derivatives (C21H34NO2](+) and [C21H38NO2](+)). In addition, chlorinated alcohols, ketones and ketoalcohols of BAC were also detected, including [C21H35ClNO](+), [C21H37ClNO](+) and [C21H35ClNO2](+) for BAC-12; and [C23H39ClNO](+), [C23H41ClNO](+) and [C23H39ClNO2](+) for BAC-14. MS/MS allowed reliable elucidation of the structures of novel DBPs, proving that chlorination starts via radical substitution in the long aliphatic chains of BAC. UV-irradiation dramatically accelerates the reaction completely destroying the original compounds in less than an hour, while the array of the intermediate products remains the same as in the dark. The formation of other DBPs proceeds due to further reactions of these primary products. The concentrations of novel DBPs in pool water reach mu g L-1 levels. These conclusions were proved by conducting model reactions of BAC with NaOCl. (C) 2019 Elsevier Ltd. All rights reserved.
机译:公共游泳池的维护需要许多技术步骤。最重要的问题之一涉及微生物安全性。苯扎氯铵(BAC)包括具有各种烷基链的同质烷基苄基二甲基氯化铵,尤其是C12和C14,并且众所周知,该类除藻剂可保持水质清洁。除BAC之外,NaOCl和紫外线照射还被用作处理池水的附加技术步骤。因此,BAC本身可以成为消毒副产物(DBP)的前身。高效液相色谱-串联质谱法(HPLC-MS / MS)具有精确的质量测量功能,已使人们在俄罗斯阿尔汉格尔斯克的公共游泳池水中发现了与BAC相关的几组DBP。这些DBP包括许多异构的单氯代衍生物([C21H37ClN](+)和[C23H41ClN](+)),羟基衍生物([C21H38NO](+)和[C23H42NO]),羰基([C21H36NO](+)和[C23H40NO] (+))和二羰基衍生物(C21H34NO2](+)和[C21H38NO2](+))。此外,还检测到BAC的氯化醇,酮和酮醇,包括BAC-12的[C21H35ClNO](+),[C21H37ClNO](+)和[C21H35ClNO2](+)。 BAC-14的[C23H39ClNO](+),[C23H41ClNO](+)和[C23H39ClNO2](+)。 MS / MS可以可靠地阐明新型DBP的结构,证明氯化是通过BAC的长脂肪链中的自由基取代而开始的。紫外线辐射可显着加速反应,在不到一个小时的时间内完全破坏了原始化合物,而中间产物的排列与黑暗中的相同。由于这些主要产物的进一步反应,其他DBP的形成继续进行。泳池水中新型DBP的浓度达到L-1级。通过进行BAC与NaOCl的模型反应可以证明这些结论。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第1期|124801.1-124801.9|共9页
  • 作者

  • 作者单位

    Northern Arctic Fed Univ Core Facil Ctr Arktika Arkhangelsk 163002 Russia;

    Northern Arctic Fed Univ Core Facil Ctr Arktika Arkhangelsk 163002 Russia|Lomonosov Moscow State Univ Dept Organ Chem Moscow 119991 Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Benzalkonium chloride; Algaecide; LC-MS; Disinfection byproducts; Chlorination; Pool water;

    机译:苯扎氯铵;除藻剂;LC-MS;消毒副产物;氯化;游泳池水;

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