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迈向 98/83/EC 饮用水指令的修订。开发一种直接注射离子色谱-串联质谱法,用于监测饮用水供应链中十五种常见和新兴的消毒副产物。

Towards the revision of the drinking water directive 98/83/EC. Development of a direct injection ion chromatographic-tandem mass spectrometric method for the monitoring of fifteen common and emerging disinfection by-products along the drinking water supply chain.

机构信息

Department of Chemistry, University of Turin, via P. Giuria 7, Torino, Italy.

Department of Chemistry, University of Turin, via P. Giuria 7, Torino, Italy.

出版信息

J Chromatogr A. 2019 Nov 8;1605:360350. doi: 10.1016/j.chroma.2019.07.004. Epub 2019 Jul 29.

Abstract

According to the recent proposal released by the European Commission for the revision of the 98/83/EC Directive, water suppliers will be requested to monitor the nine bromine- and chlorine congeners of haloacetic acids, HAAs, as well as the oxyhalides chlorite and chlorate, as disinfection by-products (DBPs) originated during the potabilization process. In this work, we propose a direct-injection method based on ion chromatography and mass spectrometric detection for the determination of the mentioned DBPs as well as bromate (already included in the 98/83/EC), implemented also for the following emerging HAAs monoiodo-, chloroiodo- and diiodo-acetic acids. The method was optimized to include the fifteen compounds in the same analytical run, tuning the chromatographic (column and gradient) and detection conditions (suppression current, transitions, RF lens settings and collision energies). To avoid matrix effect and to manage the instrumental conditions, optimization was performed directly in drinking water matrix. The method quantitation limits satisfy the new limits imposed by the future directive and range from 0.08 μg/L (monobromoacetic acid) to 0.34 μg/L (trichloroacetic acid). The performance of the method was checked along different strategic sampling points of three potabilization plants serving the city of Turin (Italy), including intermediate treatments and finished waters. Recovery was checked according to the ±30% limit of acceptability set by EPA regulations. The effect of disproportionate concentrations of chlorite and chlorate in respect to HAAs on HAA signals was studied; this aspect is underestimated in literature. The method is routinely applied by the potabilization plant of the city of Turin to confirm the effectiveness of all control measures in abstraction, treatment, distribution and storage. This study represents the first example in Italy of development and use of a cutting-edge technique for HAAs analysis along the potabilization processes.

摘要

根据欧盟委员会最近发布的 98/83/EC 指令修订提案,供水商将被要求监测作为饮用水处理过程中消毒副产物(DBPs)的九种卤代乙酸(HAA)溴和氯同系物以及亚氯酸盐和氯酸盐。在这项工作中,我们提出了一种基于离子色谱和质谱检测的直接进样方法,用于测定所述 DBPs 以及溴酸盐(已包含在 98/83/EC 中),同时也用于测定以下新兴的 HAA 单碘代、氯碘代和二碘代乙酸。该方法经过优化,可在同一分析运行中包含十五种化合物,调整了色谱(柱和梯度)和检测条件(抑制电流、跃迁、RF 透镜设置和碰撞能量)。为避免基质效应并管理仪器条件,直接在饮用水基质中进行了优化。该方法的定量限满足未来指令规定的新限值,范围从 0.08μg/L(一溴乙酸)到 0.34μg/L(三氯乙酸)。该方法的性能在为都灵市(意大利)服务的三个饮用水处理厂的不同战略采样点进行了检查,包括中间处理和成品水。根据 EPA 法规规定的可接受性±30%的限制检查了回收率。研究了亚氯酸盐和氯酸盐与 HAA 不成比例的浓度对 HAA 信号的影响;这一方面在文献中被低估了。该方法由都灵市的饮用水处理厂常规应用,以确认在取水、处理、分配和储存过程中所有控制措施的有效性。这项研究代表了意大利在饮用水处理过程中分析 HAA 的前沿技术的开发和应用的首例。

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