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采用宽谱高分辨质谱筛查技术研究胡卡尔河流域(西班牙)中的农药及其转化产物。

Investigation of pesticides and their transformation products in the Júcar River Hydrographical Basin (Spain) by wide-scope high-resolution mass spectrometry screening.

机构信息

Research Institute for Pesticides and Water (IUPA), University Jaume I, Avda. Sos Baynat s/n, E-12071, Castellón, Spain; Centro de Investigación en Contaminación Ambiental (CICA), Universidad de Costa Rica, P.O. 2060, San José, Costa Rica.

Research Institute for Pesticides and Water (IUPA), University Jaume I, Avda. Sos Baynat s/n, E-12071, Castellón, Spain.

出版信息

Environ Res. 2019 Oct;177:108570. doi: 10.1016/j.envres.2019.108570. Epub 2019 Jul 2.

Abstract

The Water Framework Directive 2000/60/EC implemented by the European Union established as the main objectives to achieve a "good ecological and chemical status" of the surface water and a "good quantitative and chemical status" of groundwater bodies. One of the major pressures affecting water bodies comes from the use of pesticides and their potential presence in the water ecosystems. For this purpose, the reliable determination of pesticides and their transformation products (TPs) in natural waters (both surface and groundwater) is required. The high number of compounds potentially reaching the aquatic environment makes extraordinary difficult, if not impossible, to investigate all these compounds even using the most powerful analytical techniques. Among these, liquid chromatography coupled to high-resolution mass spectrometry is emphasized due to its strong potential for detection and identification of many organic contaminants thanks to the accurate-mass full spectrum acquisition data. This work focuses on wide-scope screening of many pesticides and their TPs in surface water and groundwater samples, collected between March and May 2017, in the Júcar River Hydrographical Basin, Spain. For this purpose, a home-made database containing more than 500 pesticides and TPs was employed. Analyses performed by liquid chromatography coupled to quadrupole-time of flight mass spectrometry (LC-QTOF MS) allowed the identification of up to 27 pesticides and 6 TPs. The most detected compounds in groundwater were the herbicides atrazine, simazine, terbuthylazine, and their TPs (atrazine-desethyl, terbumeton-desethyl and terbuthylazine-desethyl). Regarding surface water, the fungicides carbendazim, thiabendazole and imazalil, the herbicide terbutryn and the TP terbumeton-desethyl were also detected. These results illustrate the wide use of these compounds (in the present or in the recent past) in the area under study and the vulnerability of the water bodies, and are in accordance with previous findings in other water bodies of the different Spanish Hydrographic systems.

摘要

欧盟实施的《2000/60/EC 号水框架指令》确立了实现地表水“良好生态和化学状况”以及地下水“良好数量和化学状况”的主要目标。影响水体的主要压力之一来自农药的使用及其在水生生态系统中的潜在存在。为此,需要可靠地测定天然水中(地表水和地下水)的农药及其转化产物 (TP)。大量潜在进入水生环境的化合物,如果不使用最强大的分析技术,几乎不可能调查所有这些化合物。在这些技术中,由于准确质量全谱采集数据的强大潜力,液相色谱与高分辨率质谱联用技术得到了强调,它具有检测和识别许多有机污染物的强大潜力。这项工作侧重于 2017 年 3 月至 5 月间在西班牙胡卡尔河流域地表水和地下水样本中广泛筛选多种农药及其 TP。为此,使用了一个包含 500 多种农药及其 TP 的自制数据库。通过液相色谱与四极杆飞行时间质谱 (LC-QTOF MS) 进行的分析允许鉴定出多达 27 种农药和 6 种 TP。在地下水检测到的最主要的化合物是莠去津、西玛津、特丁津及其 TP(去乙基莠去津、去乙基特丁津和去乙基特丁津)。关于地表水,还检测到杀菌剂苯菌灵、噻菌灵和咪鲜胺、除草剂特丁津和 TP 特丁津去乙基。这些结果说明了这些化合物在研究区域的广泛使用(在当前或最近过去)以及水体的脆弱性,并且与其他西班牙水文系统不同水体的先前发现一致。

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