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Nanofiltration for the separation of Pharmaceuticals from nutrients in source-separated urine

机译:纳滤用于从源分离尿液中的营养物中分离药物

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The potential of nanofiltration for the separation of pharmaceutical and estrogenic compounds from salts in urine was investigated with the aim of producing a micropollutant-free nutrient solution that can be used as a fertilizer. A fresh urine solution and a synthetic solution of similar inorganic composition were tested at different pH values in order to investigate their separation behavior. These solutions were spiked with the micropollutants propranolol, ethinylestradiol, ibuprofen, diclofenac and carbamazepine. Among the membranes tested, NF270 showed the best performance with respect to the retention of micropollutants. The optimum retention of micropollutants was obtained at values of around pH 5. At this point, the retention of all micropollutants in non-hydrolysed urine was above 92%, while the corresponding value for the synthetic urine solution was above 73%. From the results, it can be concluded that the retention mechanism is determined by steric and electrostatic effects as well as by the partitioning of the micropollutants in the membrane. The nutrients urea and ammonia were well permeated, but phosphate and sulfate were almost completely retained. Nanofiltration can consequently be used to produce a permeate which contains most of the nitrogen and a greatly reduced proportion of micropollutants.
机译:为了生产可用作肥料的不含微污染物的营养液,研究了从尿液中的盐中分离药物和雌激素化合物的纳滤潜力。为了研究其分离行为,在不同的pH值下测试了新鲜尿液和具有相似无机组成的合成溶液。这些溶液中加入了微污染物普​​萘洛尔,炔雌醇,布洛芬,双氯芬酸和卡马西平。在测试的膜中,NF270在保留微污染物方面表现出最佳性能。在pH值约为5的情况下,微污染物的最佳保留率得以实现。此时,所有微污染物在未水解尿液中的保留率均高于92%,而合成尿液的相应值则高于73%。从结果可以得出结论,保留机制是由空间和静电作用以及膜中微污染物的分配决定的。营养素尿素和氨气渗透良好,但磷酸盐和硫酸盐几乎完全保留。因此,可以使用纳滤来生产一种渗透液,该渗透液包含大部分氮和大量减少的微污染物。

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