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Removal of endocrine disruptors and cytostatics from effluent by nanofiltration in combination with adsorption on powdered activated carbon

机译:通过纳滤与吸附在粉末状活性炭上的结合,去除废水中的内分泌干扰物和细胞抑制剂

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Direct capillary nanofiltration also in combination with an upstream powdered activated carbon treatment was tested for high quality water reuse of tertiary effluent from a municipal wastewater treatment plant. Two endocrine disruptors (BPA and EE2) and two cytostatics (CytR and 5-FU) were spiked in concentrations of 1 to 2 mu g/L to evaluate the process performance. In direct NF the real total removal of the micropollutants was between 5 and 40%. Adsorption to the membrane played a major role leading to a seemingly total removal between 35 and 70%. Addition of powdered activated carbon and lignite coke dust largely reduced the influence from adsorption to the membrane and increased the total removal to >95 to 99.9% depending on the PAC type and dose. The cytostatics showed already in direct NF a very high removal due to unspecified losses. Further investigations are ongoing to understand the underlying mechanism. The PAC/NF process provided a consistently high permeate quality with respect to bulk and trace organics.
机译:还测试了直接毛细管纳米过滤与上游粉状活性炭处理相结合的方法,以对市政污水处理厂产生的三次废水进行高质量的水再利用。将两个内分泌干扰物(BPA和EE2)和两个细胞抑制剂(CytR和5-FU)加标到1-2μg / L的浓度,以评估工艺性能。在直接NF中,微量污染物的实际总去除率为5%至40%。膜的吸附起主要作用,导致表面去除率在35%至70%之间。粉末状活性炭和褐煤焦粉的添加大大降低了吸附到膜上的影响,并且根据PAC的类型和剂量,将总去除率提高到> 95至99.9%。由于未指定的损失,细胞抑制剂已在直接NF中显示出非常高的去除率。正在进行进一步的调查以了解潜在的机制。 PAC / NF工艺在散装和痕量有机物方面提供了始终如一的高渗透品质。

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