Zhu Hong-tao, Wen Xiang-hua, Huang Xia
Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China.
Huan Jing Ke Xue. 2009 Jan;30(1):302-12.
As a high efficient water and wastewater treatment technology, membrane filtration has been mainly used in wastewater treatment as membrane bioreactor, in reclaiming secondary effluent,treating surface water and potable water, and etc. Membrane fouling is a main obstacle to the wide application of membrane technology. Ozone has strong oxidizing power and has been utilized widely in water and wastewater treatment. In recent years, researches on combined process of ozone-membrane filtration are increasing. This paper does reviews and analysis of these researches. It is noticed that there has been a few of researches on the ozone treatment plus MBR process. Pre-ozonation of feed to MBR and slight ozonation of the mixed liquid in MBR may be used to relieve membrane fouling.Combined processes of ozone-membrane filtration can be divided into three classes in terms of the function of ozone and the system configuration: (1) cleaning the fouled membrane with ozone; (2) separate ozone-membrane filtration process; (3) integrated ozone-membrane filtration process. Although most reports supported that ozonation can control membrane fouling development,there were contrary results. At present, researches on the mechanisms of ozone's effect on membrane fouling control concentrated on the change of organic composition of the filtration influent under ozonation, however, particulate substances, microbial and inorganic substances may also be affected and then play roles in membrane fouling, depending on source water quality and process configuration. Moreover, there have not been common parameters to evaluate the ozone diffusion equipment and efficiency. The authors suggest that further researches should emphasize on integrated ozone-membrane process, and more attention should be paid to the cost-effectiveness of the combined process.
作为一种高效的水和废水处理技术,膜过滤主要应用于废水处理,如膜生物反应器、二级出水回收、地表水和饮用水处理等。膜污染是膜技术广泛应用的主要障碍。臭氧具有强氧化能力,已在水和废水处理中得到广泛应用。近年来,臭氧 - 膜过滤联合工艺的研究日益增多。本文对这些研究进行了综述和分析。注意到关于臭氧处理加MBR工艺的研究较少。对进入MBR的进水进行预臭氧氧化以及对MBR中的混合液进行轻度臭氧氧化可用于减轻膜污染。臭氧 - 膜过滤联合工艺根据臭氧的作用和系统配置可分为三类:(1) 用臭氧清洗污染的膜;(2) 分离式臭氧 - 膜过滤工艺;(3) 一体式臭氧 - 膜过滤工艺。尽管大多数报道支持臭氧氧化可控制膜污染的发展,但也有相反的结果。目前,关于臭氧对膜污染控制作用机制的研究集中在臭氧氧化下过滤进水有机组成的变化,然而,取决于水源水质和工艺配置,颗粒物、微生物和无机物也可能受到影响并在膜污染中起作用。此外,尚未有评估臭氧扩散设备和效率的通用参数。作者建议进一步的研究应侧重于一体式臭氧 - 膜工艺,并且应更多地关注联合工艺的成本效益。