首页> 外文会议>IWA Specialised Conference on Assessment and Control of Micropollutants/Hazardous Substances in Water >Fate of ~(14)C-17α-ethinyIestradiol in the aquatic system: the presence of sediment lowers its bioavailability for Chironomus riparius larvae
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Fate of ~(14)C-17α-ethinyIestradiol in the aquatic system: the presence of sediment lowers its bioavailability for Chironomus riparius larvae

机译:水生系统中的〜(14)C-17α-乙二醇的命运:沉积物的存在降低了骑族riparius幼虫的生物利用度

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At present, knowledge about the partitioning of estrogens between water, solids, and biota is poor, although of utmost importance for the prediction of their fate, and the associated effects on organisms in the aquatic food web. Therefore, laboratory studies were performed to investigate the distribution pattern of ~(14)C-labelled 17α-ethinylestradiol (EE2) in a sediment-water system that functions as a habitat for sediment dwelling larvae of the midge Chironomus riparius. Larvae were exposed to EE2 in two different ways: through spiking overlying water or by sediment spiking, in order to compare both possible uptake routes. Distribution of EE2 was determined by analysing sediment constituents, pore water, suspended solids, overlying water, organisms and the glass wall surface at different time intervals. It was shown that the larvae reach their maximum internal concentration of ~(14)C-EE2 after a very short exposure period (within 24 h). The bioavailability of EE2 was highly reduced by sorption of EE2 to the sediment. 144 h after water spiking, 90% of the radioactivity in the sediment was associated with its organic fraction. Further experiments showing that dietary exposure of C. riparius leads to the most efficient uptake of EE2 will be presented at the conference.
机译:目前,关于水,固体和生物群之间雌激素分区的知识差,尽管对于预测其命运至关重要,以及对水生网系中的生物体的相关影响。因此,进行实验室研究以研究沉积物水系统中〜(14)C标记的17α-乙烯雌二醇(EE2)的分布模式,其用作中风曲线稻草泥鳅的沉积物栖息地的栖息地。幼虫以两种不同的方式暴露于EE2:通过尖刺覆盖的水或沉积物尖峰,以比较这两种可能的摄取途径。通过以不同的时间间隔分析沉积物成分,孔隙水,悬浮固体,覆盖水,生物和玻璃壁表面来确定EE2的分布。结果表明,幼虫在非常短的接触期(24小时内)后达到其最大内部浓度〜(14)C-EE2。 EE2的生物利用度通过EE2吸附到沉积物中高度降低。在水尖端后144小时,沉积物中的90%的放射性与其有机级分相关。展示在会议上展示了riparius的饮食暴露的进一步实验将在会议上提出最有效的EE2的摄取。

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