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设计基于现场的河流有机微量污染物归宿研究。

Designing field-based investigations of organic micropollutant fate in rivers.

机构信息

Center for Applied Geoscience, Eberhard Karls University of Tübingen, Hölderlinstr. 12, 72074, Tübingen, Germany.

出版信息

Environ Sci Pollut Res Int. 2019 Oct;26(28):28633-28649. doi: 10.1007/s11356-019-06058-1. Epub 2019 Aug 5.

Abstract

Organic micropollutants in rivers are emitted via diffuse and point sources like from agricultural practice or wastewater treatment plants (WWTP). Extensive laboratory and field experiments have been conducted to understand emissions and fate of these pollutants in freshwaters. Nevertheless, data is often difficult to compare since common protocols for appropriate approaches are largely missing. Thus, interpretation of the observed changes in substance concentrations and of the underlying fate of these compounds downstream of the chemical input into the river is still challenging. To narrow this research gap, (1) process understanding and (2) measurement approaches for field-based investigations are critically reviewed in this article. The review includes, on the one hand, processes that change the volume of the water (hydrological processes) and, on the other hand, processes that affect the substance mass within the water (distribution and transformation). Environmental boundary conditions for the purpose of better comparability of different attenuation studies, as well as promising state-of-the-art measurement approaches from different disciplines, are presented. This overview helps to develop a tailored procedure to assess turnover mechanisms of organic micropollutants under field conditions. In this respect, further research needs to standardize interdisciplinary approaches to increase the informative value of collected data.

摘要

河流中的有机微污染物通过农业活动或污水处理厂等分散和集中的污染源排放。已经进行了广泛的实验室和现场实验,以了解这些污染物在淡水中的排放和归宿。然而,由于缺乏通用的适当方法的协议,数据往往难以比较。因此,解释物质浓度的观测变化以及这些化合物在河流中化学输入点下游的归宿仍然具有挑战性。为了缩小这一研究差距,本文从(1)过程理解和(2)基于现场的研究的测量方法两方面进行了批判性的回顾。该综述一方面包括改变水体体积的过程(水文过程),另一方面包括影响水体中物质质量的过程(分布和转化)。还介绍了用于提高不同衰减研究可比性的环境边界条件,以及来自不同学科的有前途的最新测量方法。这一概述有助于制定一种针对现场条件下有机微污染物转化机制的定制程序。在这方面,需要进一步的研究来标准化跨学科方法,以提高收集数据的信息量。

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