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采用 UF/NF 混合工艺处理污水厂二级出水以实现饮用水回用:吸附与混凝在去除改善和膜污染缓解方面的比较。

Hybrid UF/NF process treating secondary effluent of wastewater treatment plants for potable water reuse: Adsorption vs. coagulation for removal improvements and membrane fouling alleviation.

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, 150090, PR China.

Shenzhen Municipal Design & Research Institute Co., Ltd., Shenzhen, 518029, PR China.

出版信息

Environ Res. 2020 Sep;188:109833. doi: 10.1016/j.envres.2020.109833. Epub 2020 Jun 30.

Abstract

Coagulation and adsorption are gradually adopted as pre-treatments to produce reclaimed potable water. However, previous researches on membrane fouling mechanisms were currently insufficient to minimize dual membrane fouling. This study aimed at investigating the effects of pre-coagulation and pre-adsorption on the removal performance and membrane fouling alleviation of dual membrane UF/NF process in treating secondary effluent from a wastewater treatment plant. The results indicated that both types of pretreatments conferred positive effects on organic membrane fouling removal of the UF process whereas diverse effects on NF process. Pre-coagulation could enhance the removal of nitrogen and phosphorus to contribute towards producing microbiologically-stable water. On the other hand, introduction of Al reduced the removal efficiency of UF/NF systems on heavy metals. From the perspective of UF membrane fouling, two pretreatments employed could increase the flux of UF, but simultaneously aggravating irreversible membrane fouling. Hermia and Tansel models revealed an unstable cake filtration was caused by pre-coagulation and pre-adsorption. Both the models consistently demonstrated the rapid formation of cake filtration onto UF membrane surface. Interestingly, the powdered activated carbon (PAC) adsorption could significantly reduce cake layer fouling onto the surface of NF membrane, while pre-coagulation aggravated the NF fouling. These results are essential to developing robust, cost-effective and energy-efficient strategies based on membranes to produce reclaimed potable water.

摘要

混凝和吸附逐渐被采用作为预处理方法,以生产再生饮用水。然而,目前对于膜污染机制的研究还不足以最大限度地减少双重膜污染。本研究旨在探讨混凝和吸附预处理对处理污水处理厂二级出水的双膜 UF/NF 工艺去除性能和膜污染缓解的影响。结果表明,两种预处理方法均对 UF 工艺的有机膜污染去除具有积极影响,而对 NF 工艺的影响则不同。混凝预处理可以提高氮和磷的去除率,有助于生产微生物稳定的水。另一方面,引入 Al 会降低 UF/NF 系统对重金属的去除效率。从 UF 膜污染的角度来看,采用的两种预处理方法可以提高 UF 的通量,但同时加剧了不可逆的膜污染。Hermia 和 Tansel 模型表明,混凝和吸附预处理会导致不稳定的滤饼过滤。两个模型都一致表明,滤饼过滤会迅速在 UF 膜表面形成。有趣的是,粉末活性炭(PAC)吸附可以显著减少 NF 膜表面的滤饼层污染,而混凝预处理会加剧 NF 污染。这些结果对于开发基于膜的稳健、经济高效和节能的再生饮用水生产策略至关重要。

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