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首页> 外文期刊>The Science of the Total Environment >Suspect screening and prioritization of chemicals of concern (COCs) in a forest-water reuse system watershed
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Suspect screening and prioritization of chemicals of concern (COCs) in a forest-water reuse system watershed

机译:在森林水回用系统流域中对可疑化学物质(COC)进行可疑筛查和优先级排序

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Much research has assessed organic chemicals of concern (COCs) in municipal wastewater and receiving waters, but few studies have examined COCs in land treatment systems. Many prior studies have implemented targeted methods that quantify a relatively small fraction of COCs present in wastewater and receiving waters. This study used suspect screening to assess chemical features in ground- and surface waters from a watershed where secondary-treated wastewater is irrigated onto 900 ha of temperate forest, offering a more holistic view of chemicals that contribute to the exposome. Chemical features were prioritized by abundance and ToxPi scoring across seasonal sampling events to determine if the forest-water reuse system contributed to the chemical exposome of ground- and surface waters. The number of chemical features detected in wastewater was usually higher than on- and off-site ground- and surface waters; in wastewater, chemical features trended with precipitation in which greater numbers of features were detected in months with low precipitation. The number of chemical features detected in off- and on-site waters was similar. The lower overlap between chemical features found in wastewater and downstream surface waters, along with the similar numbers of features being detected in upstream and downstream surface waters, suggests that though wastewater may be a source of chemicals to ground and surface waters on-site, dissipation of wastewater-derived features (in number and peak area abundance) likely occurs with limited off-site surface water export by the forested land treatment system. Further, the numbers of features detected on site and the overlap between wastewater and surface waters did not increase during periods of low rainfall, counter to our initial expectations. The chemical features tentatively identified in this watershed appear common to features identified in other studies, warranting further examination on the potential for resulting impacts of these on humans and the environment. (C) 2019 Elsevier B.V. All rights reserved.
机译:大量研究评估了市政废水和接收水中所关注的有机化学品(COC),但很少有研究评估土地处理系统中的COC。许多先前的研究已经实施了有针对性的方法,可以量化废水和接收水中存在的相对较小的COC。这项研究使用可疑筛查方法评估流域的地下水和地表水的化学特征,该流域将经过二次处理的废水灌溉到900公顷的温带森林中,从而提供了更全面的化学信息,以了解暴露于该水体的化学物质。通过季节性采样事件中的丰度和ToxPi评分确定化学特征的优先级,以确定森林水回用系统是否有助于地下水和地表水的化学暴露。废水中检测到的化学特征的数量通常高于现场和非现场的地下水和地表水。在废水中,化学特征会随着降水而变化,其中在低降水的月份中会检测到更多的特征。在场外和场外水域检测到的化学特征数量相似。在废水和下游地表水中发现的化学特征之间较低的重叠,以及在上游和下游地表水中发现的特征数量相似,这表明尽管废水可能是现场的地下水和地表水的化学物质来源,由于林地处理系统限制了非现场地表水的出口,很可能会发生废水衍生特征(数量和峰面积丰度)的变化。此外,在低降雨期间,现场检测到的特征数量以及废水和地表水之间的重叠没有增加,这与我们最初的预期相反。在该流域中初步鉴定出的化学特征似乎与其他研究中鉴定出的特征共有,因此有必要进一步检查这些化学特征对人类和环境的潜在影响。 (C)2019 Elsevier B.V.保留所有权利。

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