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纳滤对增强型微污染物的去除及其在污水再生中的环境风险:中试研究。

Enhanced micropollutants removal by nanofiltration and their environmental risks in wastewater reclamation: A pilot-scale study.

机构信息

Environmental Simulation and Pollution Control State Key Joint Laboratory, School of Environment, Tsinghua University, Beijing, China.

Environmental Simulation and Pollution Control State Key Joint Laboratory, School of Environment, Tsinghua University, Beijing, China.

出版信息

Sci Total Environ. 2020 Nov 20;744:140954. doi: 10.1016/j.scitotenv.2020.140954. Epub 2020 Jul 17.

Abstract

The emerging contaminants, in particular pharmaceuticals and personal care products and environmental estrogens, have been received global concerns in recent years. Nanofiltration (NF) as an advanced tertiary treatment technology can be a reliable and potential tool for micropollutants removal. However, the influence of operation conditions of NF system to micropollutants rejections in an engineering application, is still lacking. Here, a pilot-scale NF system was set up to investigate its removal efficiencies to 49 micropollutants under different operation conditions by treating actual municipal wastewater. The results showed that the rejections of positively and neutrally charged micropollutants with molecular weight higher than 250 g mol were both higher than 80%. Besides, most negatively charged micropollutants were also rejected higher than 80% under different operation conditions. The rejections of most micropollutants increased with temperature decreased from 25 °C to 13 °C, which was primarily ascribed to decrease of pore size of NF membrane at low temperature. Compared with the water recovery rate of 80%, lower rejections of micropollutants were observed with lower water recovery rate of 60%. Except for sulfamethoxazole, the risk quotients of other detected 20 micropollutants in NF effluent were all lower than 1.0, showing medium or no risks to aquatic organisms. This study might aid understanding the performance of micropollutants rejections by NF in actual engineering application and could give guideline to the implementation of NF technology in future advanced treatment processes.

摘要

近年来,新兴污染物(特别是药品、个人护理产品和环境雌激素)引起了全球关注。纳滤(NF)作为一种先进的三级处理技术,可为去除微量污染物提供可靠且有潜力的手段。然而,在工程应用中,NF 系统的操作条件对微量污染物去除率的影响仍缺乏研究。本研究建立了一个中试规模的纳滤系统,通过处理实际市政污水,考察了不同操作条件下对 49 种微量污染物的去除效率。结果表明,对于分子量大于 250g/mol 的带正电荷和中性微量污染物,其截留率均高于 80%。此外,在不同操作条件下,大多数带负电荷的微量污染物的截留率也高于 80%。大多数微量污染物的截留率随温度从 25°C 降低至 13°C 而增加,这主要归因于低温下纳滤膜孔径的减小。与 80%的水回收率相比,在 60%的水回收率下,微量污染物的截留率较低。除了磺胺甲恶唑,纳滤出水中其他 20 种检测到的微量污染物的风险商均低于 1.0,对水生生物的风险为中等或无。本研究有助于了解纳滤在实际工程应用中去除微量污染物的性能,并为纳滤技术在未来高级处理工艺中的应用提供指导。

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