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Use of a Battery of Chemical and Ecotoxicological Methods for the Assessment of the Efficacy of Wastewater Treatment Processes to Remove Estrogenic Potency

机译:使用一系列化学和生态毒理学方法评估废水处理工艺去除雌激素的功效

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摘要

Endocrine Disrupting Compounds pose a substantial risk to the aquatic environment. Ethinylestradiol (EE2) and estrone (E1) have recently been included in a watch list of environmental pollutants under the European Water Framework Directive. Municipal wastewater treatment plants are major contributors to the estrogenic potency of surface waters. Much of the estrogenic potency of wastewater treatment plant (WWTP) effluents can be attributed to the discharge of steroid estrogens including estradiol (E2), EE2 and E1 due to incomplete removal of these substances at the treatment plant. An evaluation of the efficacy of wastewater treatment processes requires the quantitative determination of individual substances most often undertaken using chemical analysis methods. Most frequently used methods include Gas Chromatography-Mass Spectrometry (GCMS/MS) or Liquid Chromatography-Mass Spectrometry (LCMS/MS) using multiple reaction monitoring (MRM). Although very useful for regulatory purposes, targeted chemical analysis can only provide data on the compounds (and specific metabolites) monitored. Ecotoxicology methods additionally ensure that any by-products produced or unknown estrogenic compounds present are also assessed via measurement of their biological activity. A number of in vitro bioassays including the Yeast Estrogen Screen (YES) are available to measure the estrogenic activity of wastewater samples. Chemical analysis in conjunction with in vivo and in vitro bioassays provides a useful toolbox for assessment of the efficacy and suitability of wastewater treatment processes with respect to estrogenic endocrine disrupting compounds. This paper utilizes a battery of chemical and ecotoxicology tests to assess conventional, advanced and emerging wastewater treatment processes in laboratory and field studies.
机译:内分泌干​​扰化合物对水生环境构成重大风险。乙炔雌二醇(EE2)和雌酮(E1)最近已列入《欧洲水框架指令》的环境污染物关注清单。市政废水处理厂是地表水雌激素效价的主要贡献者。废水处理厂(WWTP)废水的大部分雌激素效力可归因于处理厂中这些物质的去除不完全,包括雌二醇(E2),EE2和E1在内的类固醇雌激素的排放。要对废水处理过程的效率进行评估,需要定量确定最常使用化学分析方法进行的单个物质。最常用的方法包括使用多反应监测(MRM)的气相色谱-质谱(GCMS / MS)或液相色谱-质谱(LCMS / MS)。尽管对于监管目的非常有用,但靶向化学分析只能提供有关所监测化合物(和特定代谢物)的数据。生态毒理学方法还确保还可以通过测量其副产物的生物活性来评估产生的任何副产物或未知的雌激素化合物。包括酵母雌激素筛选(YES)在内的许多体外生物测定均可用于测量废水样品的雌激素活性。化学分析与体内和体外生物测定相结合,提供了一个有用的工具箱,可用于评估废水处理过程对雌激素内分泌干扰化合物的功效和适用性。本文利用一系列化学和生态毒理学测试来评估实验室和现场研究中常规,先进和新兴的废水处理工艺。

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