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Impacts of Coagulation Pretreatment on MF Filtration and a Comparative Study of Different Membrane Module Types
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作者 LIU Oi-feng Kim Seung-hyun +1 位作者 Yun Jong-sup Moon Seong-yong 《Journal of Ocean University of China》 SCIE CAS 2006年第4期295-299,共5页
Changes in the regulatory requirements and the forthcoming Disinfectant/Disinfection By-Products (D/DBP) Rule will require that drinking water treatment facilities be operated to achieve maximum removals of particle... Changes in the regulatory requirements and the forthcoming Disinfectant/Disinfection By-Products (D/DBP) Rule will require that drinking water treatment facilities be operated to achieve maximum removals of particles and disinfectant tolerant microorganisms as well as natural organic matter (NOM). For drinking water production, the use of membrane filtration processes such as microfiltration and ultrafiltration (MF/UF) alone to satisfy the turbidity, particle and microorganism removal a requirement of the surface water treatment regulation (SWTR) is not enough. MF/UF treatment processes can achieve only nominal (10 percent) removal of disinfection by-products (DBP) precursors (James, et al., 1995). On the other hand, too fast fouling can make the filtration processes more difficult to carry on. To solve these problems, many authors have been interested in installing coagulation pretreatment before membrane filtration to improve membrane performance. However, previous studies reported conflicting results. Some supported the effectiveness of coagulation pretreatment, while others contended that coagulation aggravated membrane performance. This research aims to identify the effects of coagulation pretreatment on membrane filtration through a pilot study using PVDF membrane in combination with analyzing the rationale of coagulation. Another objective of this research was to evaluate the different impacts on membrane performance of using different membrane modules (the submerged module and pressured module). The results showed that coagulation pretreatment greatly improved the membrane performance, extending the filtration time as well as reducing the permeated organic level, and that the submerged module is much more efficient than the pressured module. 展开更多
关键词 coagulation pretreatment RATIONALE FOULING submerged module pressured module
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城市新区的一体化污水处理系统的研发 被引量:1
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作者 章名伙 崔林生 +1 位作者 田继飞 孙波 《环境工程》 CAS CSCD 北大核心 2023年第S02期1160-1162,1166,共4页
针对某城市新区住宅小区开发的一体化污水处理系统,通过一个机械预清洗装置的筛选之后,再通过一个曝气池和带浸没式膜过滤器(带超滤过滤器的膜曝气系统)的过滤及生物阶段操作作为间歇性(中水回用)反硝化过程完成污水处理工艺。经过一体... 针对某城市新区住宅小区开发的一体化污水处理系统,通过一个机械预清洗装置的筛选之后,再通过一个曝气池和带浸没式膜过滤器(带超滤过滤器的膜曝气系统)的过滤及生物阶段操作作为间歇性(中水回用)反硝化过程完成污水处理工艺。经过一体化污水处理系统的污水可用于生活中的清洗用水,如冲洗马桶或洗车拖地等,还可以进行灌溉或直接排入地下水管道或出水管道。本次研发的一体化污水处理系统采用MBR膜(马廷膜)技术,属于超滤膜,具有出水水质高,结构紧凑,占地面积小,能耗低,运营维护成本低,使用寿命长,可无人值守等特点。特别适合城市新区住宅小区、政府机构,医疗机构的污水处理,它对于保护城市环境和居民节约用水具有很大的市场前景。 展开更多
关键词 一体化 污水处理 曝气池 生化池 过滤膜组 马廷
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