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针对水生微污染物进行监测:暴露分类及在瑞士情况中的应用。

Targeting aquatic microcontaminants for monitoring: exposure categorization and application to the Swiss situation.

机构信息

Eawag, Swiss Federal Institute of Aquatic Science and Technology, Ueberlandstrasse 133, 8600, Dübendorf, Switzerland.

出版信息

Environ Sci Pollut Res Int. 2010 Feb;17(2):341-54. doi: 10.1007/s11356-009-0167-8. Epub 2009 May 28.

Abstract

BACKGROUND, AIM, AND SCOPE: Aquatic microcontaminants (MCs) comprise diverse chemical classes, such as pesticides, biocides, pharmaceuticals, consumer products, and industrial chemicals. For water pollution control and the evaluation of water protection measures, it is crucial to screen for MCs. However, the selection and prioritization of which MCs to screen for is rather difficult and complex. Existing methods usually are strongly limited because of a lack of screening regulations or unavailability of required data. METHOD AND MODELS: Here, we present a simple exposure-based methodology that provides a systematic overview of a broad range of MCs according to their potential to occur in the water phase of surface waters. The method requires input of publicly available data only. Missing data are estimated with quantitative structure-property relationships. The presented substance categorization methodology is based on the chemicals' distribution behavior between different environmental media, degradation data, and input dynamics.

RESULTS

Seven different exposure categories are distinguished based on different compound properties and input dynamics. Ranking the defined exposure categories based on a chemical's potential to occur in the water phase of surface waters, exposure categories I and II contain chemicals with a very high potential, categories III and IV contain chemicals with a high potential, and categories V and VI contain chemicals with a moderate to low potential. Chemicals in category VII are not evaluated because of a lack of data. We illustrate and evaluate the methodology on the example of MCs in Swiss surface waters. Furthermore, a categorized list containing potentially water-relevant chemicals is provided.

DISCUSSION

Chemicals of categories I and III continuously enter surface waters and are thus likely to show relatively steady concentrations. Therefore, they are best suited for water monitoring programs requiring a relatively low sampling effort. Chemicals in categories II and IV have complex input dynamics. They are consequently more difficult to monitor. However, they should be considered if an overall picture is needed that includes contaminants from diffuse sources.

CONCLUSIONS

The presented methodology supports compound selection for (a) water quality guidance, (b) monitoring programs, and (c) further research on the chemical's ecotoxicology. The results from the developed categorization procedure are supported by data on consumption and observed concentrations in Swiss surface waters. The presented methodology is a tool to preselect potential hazardous substances based on exposure-based criteria for policy guidance and monitoring programs and a first important step for a detailed risk assessment for potential microcontaminants.

摘要

背景、目的和范围:水生微污染物(MCs)包括多种化学物质,如农药、杀生剂、药物、消费品和工业化学品。为了进行水污染控制和评估水保护措施,筛选 MCs 至关重要。然而,筛选哪些 MCs 进行筛选是相当困难和复杂的。由于缺乏筛选规定或缺乏所需的数据,现有的方法通常受到严重限制。

方法和模型

在这里,我们提出了一种简单的基于暴露的方法,根据 MCs 在地表水水相中的潜在出现情况,对广泛的 MCs 进行系统概述。该方法仅需要输入公开可用的数据。使用定量结构-性质关系来估计缺失的数据。提出的物质分类方法基于化学物质在不同环境介质之间的分布行为、降解数据和输入动态。

结果

根据不同化合物的性质和输入动态,区分了七种不同的暴露类别。根据一种化学物质在地表水水相中的潜在出现情况,对定义的暴露类别进行排名,类别 I 和 II 包含具有非常高潜力的化学物质,类别 III 和 IV 包含具有高潜力的化学物质,类别 V 和 VI 包含具有中等到低潜力的化学物质。由于缺乏数据,类别 VII 的化学物质未进行评估。我们以瑞士地表水的 MCs 为例说明了该方法,并对其进行了评估。此外,还提供了一个包含潜在与水有关的化学物质的分类清单。

讨论

类别 I 和 III 的化学物质不断进入地表水,因此它们的浓度可能相对稳定。因此,它们最适合需要相对较低采样工作量的水质监测计划。类别 II 和 IV 的化学物质具有复杂的输入动态。因此,它们更难监测。然而,如果需要包括来自分散源的污染物的整体情况,则应考虑这些化学物质。

结论

所提出的方法支持(a)水质指导、(b)监测计划和(c)化学物质生态毒理学的进一步研究中的化合物选择。开发的分类程序的结果得到了瑞士地表水消费和观测浓度数据的支持。所提出的方法是基于暴露标准对潜在危险物质进行预选的工具,用于政策指导和监测计划,并为潜在微污染物的详细风险评估提供了重要的第一步。

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