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一种将自然净化技术、膜过滤和金属氧化物吸附相结合的综合废水回用概念。

An integrated wastewater reuse concept combining natural reclamation techniques, membrane filtration and metal oxide adsorption.

作者信息

Sperlich A, Zheng X, Ernst M, Jekel M

机构信息

Department of Water Quality Control, Technical University of Berlin, Sekr. KF 4, Str. des 17. Juni 135, D-10623, Berlin, Germany.

出版信息

Water Sci Technol. 2008;57(6):909-14. doi: 10.2166/wst.2008.186.

Abstract

In a Sino-German research project, a sustainable water reclamation concept was developed for different applications of municipal water reuse at the Olympic Green 2008 in Beijing, China. Results from pilot-scale experiments in Beijing and Berlin show that selective nutrient removal by adsorption onto granular ferric hydroxide (GFH) after a membrane bioreactor (MBR) can maintain a total phosphorus concentration of <0.03 microg L(-1) P, thus preventing eutrophication of artificial lakes. Operation time of GFH adsorption columns can be extended by regeneration using sodium hydroxide solution. A subsequent ultrafiltration (UF) membrane after bank filtration creates an additional barrier for pathogens and allows for further urban reuse applications such as toilet flushing. Short term bank / bio-filtration prior to UF is shown to effectively remove biopolymers and reduce membrane fouling.

摘要

在一个中德研究项目中,针对中国北京2008年奥林匹克公园市政中水回用的不同应用,开发了一种可持续的水回收概念。在北京和柏林进行的中试规模实验结果表明,在膜生物反应器(MBR)之后通过吸附到氢氧化铁颗粒(GFH)上进行选择性养分去除,可以将总磷浓度维持在<0.03微克/升P,从而防止人工湖富营养化。GFH吸附柱的运行时间可以通过用氢氧化钠溶液再生来延长。在岸边过滤之后使用的超滤(UF)膜为病原体创造了额外的屏障,并允许进一步用于城市回用,如冲洗厕所。结果表明,在超滤之前进行短期岸边/生物过滤可有效去除生物聚合物并减少膜污染。

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