AbstractEndocrine-disrupting chemicals are mainly discharged into the environment by wastewater treatm'/> (Anti-)estrogenic and (anti-)androgenic effects in wastewater during advanced treatment: comparison of three in vitro bioassays
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(Anti-)estrogenic and (anti-)androgenic effects in wastewater during advanced treatment: comparison of three in vitro bioassays

机译:(抗)雌激素和(抗)在先进治疗过程中废水中的雌激素作用:三种体外生物测定的比较

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AbstractEndocrine-disrupting chemicals are mainly discharged into the environment by wastewater treatment plants (WWTPs) and are known to induce adverse effects in aquatic life. Advanced treatment with ozone successfully removes such organic micropollutants, but an increase of estrogenic effects after the ozonation of hospital wastewater was observed in previous studies. In order to investigate this effect, estrogenic and androgenic as well as anti-estrogenic and anti-androgenic activities were observed during treatment of hospital wastewater using three different effect-based reporter gene bioassays. Despite different matrix influences, sensitivities, and test-specific properties, all assays used obtained comparable results. Estrogenic and androgenic activities were mainly reduced during the biological treatment and further removed during ozonation and sand filtration, resulting in non-detectable agonistic activities in the final effluent. An increased estrogenic activity after ozonation could not be observed in this study. Antagonistic effects were removed in the biological treatment by up to 50?% without further reduction in the advanced treatment. Due to the presence of antagonistic substances within the wastewater, masking effects were probable. Therefore, this study showed the relevance of antagonistic activities at hospital WWTPs and illustrates the need for a better understanding about antagonistic effects.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>内分泌破坏化学品主要排入环境中污水处理厂(WWTPS)并已知在水生生命中诱导不利影响。臭氧的先进治疗成功地除去这种有机微胶质剂,但在先前的研究中观察到医院废水的臭氧处理后的雌激素效应增加。为了研究这种效果,在使用三种不同效应的报告基因生物测定的情况下,在医院废水的治疗过程中观察到雌激素和雄激素以及抗雌激素和抗雄激素活性。尽管基质不同的基质影响,灵敏度和特异性特性,但使用的所有测定方法获得了可比的结果。在生物处理过程中主要减少了雌激素和雄激素活性,并在臭氧和砂过滤期间进一步除去,导致最终流出物中的不可检测的激动活性。在本研究中无法观察到臭氧后的雌激素活性增加。在生物处理中除去拮抗作用,高达50〜%,而无需进一步减少先进治疗。由于废水中存在拮抗物质,可能是可能的掩蔽效果。因此,该研究表明,拮抗活动在医院WWTPS的相关性,并说明了对拮抗作用的更好理解的需要。 ]]>

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