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Advanced treatment of antibiotic wastewater by nanofiltration: membrane selection and operation optimization

机译:纳滤深度处理抗生素废水:膜的选择和运行优化

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Orthogonal experiments of L-9(3(4)) were carried out to select suitable nanofiltration (NF) membrane and optimize operational conditions of NF for advanced treatment of antibiotic wastewater by three commercial membranes (Osmonics, Sepro and Synder Corp). Results showed that the GE membrane was selected through comparing membrane flux and pollutants rejections, and its optimal conditions were at transmembrane pressure (TMP) of 10 bar and pH of 5.0. Under these optimized conditions, the permeate flux reached 64.7 L/h m(2), and the rejection rates of total organic carbon, chemical oxygen demand, UV254, color, and turbidity were 99.3, 91.8, 91.5, 100, and 87.2%, respectively. The rejection rates of multivalent ions were higher than 93%. Humic-like and soluble microbial by-product-like substances in the feed water could be effectively removed. Analysis of variance showed that TMP was the major factor of both permeate flux and monovalent anion removal (p < 0.05), and membrane type was the major factor of removing nearly all pollutants except Na+ and K+ in test conditions. The pH did not have any significant effect on neither permeate flux nor pollutants rejection rates.
机译:进行了L-9(3(4))的正交实验,以选择合适的纳滤(NF)膜并优化NF的操作条件,以通过三种商业膜(Osmonics,Sepro和Synder Corp)对抗生素废水进行深度处理。结果表明,通过比较膜通量和污染物截留率选择了GE膜,其最佳条件是跨膜压(TMP)为10 bar,pH为5.0。在这些优化条件下,渗透通量达到64.7 L / hm(2),总有机碳,化学需氧量,UV254,颜色和浊度的截留率分别为99.3%,91.8、91.5、100和87.2% 。多价离子的排斥率高于93%。可以有效去除进水中的腐殖质样和可溶性微生物副产物样物质。方差分析表明,TMP是渗透通量和单价阴离子去除的主要因素(p <0.05),而膜类型是在测试条件下去除几乎所有污染物的主要因素,除了Na +和K +。 pH值对渗透通量和污染物去除率均无显着影响。

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