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Comparison of UV photolysis, nanofiltration, and their combination to remove hormones from a drinking water source and reduce endocrine disrupting activity

机译:紫外线光解,纳滤及其组合用于从饮用水源中去除激素并降低内分泌干扰活性的比较

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摘要

A sequential water treatment combining low pressure ultraviolet direct photolysis with nanofiltration was evaluated to remove hormones from water, reduce endocrine disrupting activity, and overcome the drawbacks associated with the individual processes (production of a nanofiltration-concentrated retentate and formation of toxic by-products). 17 beta-Estradiol, 17 alpha-ethinylestradiol, estrone, estriol, and progesterone were spiked into a real water sample collected after the sedimentation process of a drinking water treatment plant. Even though the nanofiltration process alone showed similar results to the combined treatment in terms of the water quality produced, the combined treatment offered advantage in terms of the load of the retentate and decrease in the endocrine-disrupting activity of the samples. Moreover, the photolysis by-products produced, with higher endocrine disrupting activity than the parent compounds, were effectively retained by the membrane. The combination of direct LP/UV photolysis with nanofiltration is promising for a drinking water utility that needs to cope with sudden punctual discharges or deterioration of the water quality and wants to decrease the levels of chemicals in the nanofiltration retentate.
机译:评估了将低压紫外线直接光解与纳米过滤相结合的顺序水处理技术,以去除水中的激素,降低内分泌干扰活性,并克服与各个过程相关的缺点(纳滤浓缩物的产生和有毒副产物的形成) 。将17β-雌二醇,17α-乙炔雌二醇,雌酮,雌三醇和孕酮掺入饮用水处理厂沉淀过程后收集的真实水样中。即使就所产生的水质而言,仅纳滤过程显示出与联合处理相似的结果,但联合处理在滞留物负载和样品内分泌干扰活性降低方面提供了优势。而且,所产生的光解副产物比母体化合物具有更高的内分泌干扰活性,可被膜有效保留。直接LP / UV光解与纳米过滤的结合对于饮用水公用事业很有希望,该公用事业需要应付突然的点滴排放或水质恶化,并希望降低纳米过滤渗余物中的化学物质含量。

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