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水处理中混凝絮凝与膜过滤耦合的效果:综述

The effect of coupling coagulation and flocculation with membrane filtration in water treatment: a review.

作者信息

Leiknes TorOve

机构信息

NTNU- Norwegian University of Science and Technology, Department of Hydraulic and Environmental Engineering, S. P. Andersensvei 5, N-7491 Trondheim, Norway.

出版信息

J Environ Sci (China). 2009;21(1):8-12. doi: 10.1016/s1001-0742(09)60003-6.

Abstract

Water supply and sanitation demands are foreseen to face enormous challenges over the coming decades to meet the fast growing needs in a global perspective. Significant growth in the industry is predicted and membrane separation technologies have been identified as one of the possible solutions to meet future demands. Application and implementation of membrane technology is expected both in production of potable water as well as in treatment of wastewater. In potable water production membranes are substituting conventional separation technologies due to the superior performance, potential for less chemical use and sludge production, as well as the potential to fulfill hygienic barrier requirements. Membrane bio-reactor (MBR) technology is probably the membrane process which has had most success and has the best prospects for the future in wastewater treatment. Trends and developments indicate that this technology is becoming accepted and is rapidly becoming the best available technology for many wastewater treatment applications. A major drawback of MBR systems is membrane fouling. Studies have shown that fouling mitigation in MBR systems can potentially be done by coupling coagulation and flocculation to the process.

摘要

从全球角度来看,预计未来几十年供水和卫生需求将面临巨大挑战,以满足快速增长的需求。预计该行业将有显著增长,膜分离技术已被确定为满足未来需求的可能解决方案之一。膜技术有望应用于饮用水生产以及废水处理。在饮用水生产中,由于膜具有卓越的性能、减少化学药剂使用和污泥产生的潜力以及满足卫生屏障要求的潜力,正逐步取代传统分离技术。膜生物反应器(MBR)技术可能是在废水处理中最成功且未来前景最好的膜工艺。趋势和发展表明,这项技术正被广泛接受,并迅速成为许多废水处理应用中最佳的可用技术。MBR系统的一个主要缺点是膜污染。研究表明,通过在该工艺中结合混凝和絮凝,有可能减轻MBR系统中的污染。

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