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首页> 外文期刊>Chemical engineering journal >Retention of emerging micropollutants from UP water and a municipal secondary effluent by ultrafiltration and nanofiltration
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Retention of emerging micropollutants from UP water and a municipal secondary effluent by ultrafiltration and nanofiltration

机译:通过超滤和纳滤保留UP水和市政二级废水中的新兴微污染物

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摘要

This study investigates the removal of 11 emerging contaminants dissolved in ultrapure water or in municipal secondary effluent by ultrafiltration and nanofiltration membranes. The influence of the most important operating variables (nature and MWCO of the membranes, transmembrane pressure, tangential velocity, pH and temperature) on the permeate flux and on the retention of the selected compounds was discussed. Most of the emerging compounds presented retentions above 70% with the selected NF membranes. However, lower retention coefficients were obtained with the UF membranes tested (<50%, except for hydroxybiphenyl). According to the results obtained for membrane fouling, retention coefficients and adsorption of contaminants on the membranes, while adsorption is the main mechanism for micropollutants retention by UF filtration membranes, size exclusion and electrostatic repulsion at high pH are dominant in the case of NF membranes. In addition, retention coefficients for parameters that measure the quality of the effluent (chemical oxygen demand, absorbance at 254 nm, turbidity, total nitrogen and total phosphorus) were also evaluated, and the results revealed that both UF and NF are feasible options for the treatment of municipal secondary effluent, leading to a permeate stream that can be reused in several applications.
机译:这项研究调查了通过超滤和纳滤膜去除溶解在超纯水或市政二级废水中的11种新兴污染物的方法。讨论了最重要的操作变量(膜的性质和MWCO,跨膜压力,切线速度,pH和温度)对渗透通量和所选化合物保留的影响。大多数新兴化合物在选定的NF膜中保留率均超过70%。但是,用测试的超滤膜获得的保留系数较低(<50%,除了羟基联苯)。根据膜污染的结果,固着系数和污染物在膜上的吸附,虽然吸附是超滤膜保留微量污染物的主要机理,但在NF膜的情况下,尺寸排阻和静电排斥在高pH下占主导地位。此外,还评估了用于测量废水质量的参数(化学需氧量,254 nm的吸光度,浊度,总氮和总磷)的保留系数,结果表明,UF和NF都是可行的选择。市政二级废水的处理,导致渗透流可以在多种应用中重复使用。

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