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纤维束过滤技术处理微污染水源水的中试研究
引用本文:徐传力,刘凡清.纤维束过滤技术处理微污染水源水的中试研究[J].中国给水排水,2008,24(3):46-48.
作者姓名:徐传力  刘凡清
作者单位:同济大学,环境科学与工程学院,上海,200092
摘    要:采用纤维柬过滤技术与均质滤料过滤技术处理某石化水厂的微污染源水。结果表明,纤维柬过滤技术比均质滤料过滤技术对浊度、色度的去除效果更好。纤维柬过滤在滤速为15m/h时,出水浊度最低可达0.2NTU以下,色度为10倍,过滤周期为36h;在滤速为20m/h时,出水浊度仍能达到0.3NTU以下,且过滤周期可达到24h。均质滤料过滤在滤速为8m/h时,出水浊度最低只能达到0.3NTU,色度为15倍,过滤周期为24h。纤维柬过滤技术具有阻力小、滤速快的特点,对中小水厂改扩建有积极的推广价值。

关 键 词:纤维束  微污染水源水  均质滤料  过滤  纤维束过滤  技术处理  微污染水源水  中试研究  Water  Treatment  Source  Filtration  Bundle  Study  价值  改扩建  中小  阻力  过滤周期  出水浊度  滤速  去除效果  色度  结果  微污染源水
文章编号:1000-4602(2008)03-0046-03
收稿时间:2007-10-30

Pilot Study on Fibrous Bundle Filtration for Micropolluted Source Water Treatment
XU Chuan-li,LIU Fan-qing.Pilot Study on Fibrous Bundle Filtration for Micropolluted Source Water Treatment[J].China Water & Wastewater,2008,24(3):46-48.
Authors:XU Chuan-li  LIU Fan-qing
Affiliation:XU Chuan-li,LIU Fan-qing(College of Environmental Science , Engineering,Tongji University,Shanghai 200092,China)
Abstract:Fibrous bundle filtration technology and uniform media filtration technology were used for treatment of micropolluted source water in a petrochemical waterworks. The results indicate that the fibrous bundle filtration has higher removal efficiency of turbidity and color than uniform media filtration. For fibrous bundle filtration, the lowest turbidity in the filtrated water can be under 0.2 NTU, color is 10 times and filtration period is 36 h when the filtration rate is 15 m/h. Under the condition of 20 m/h filtration rate, the turbidity in the filtrated water can also be under 0.3 NTU and filtration period is 24 h. For uniform media filtration, the lowest turbidity in the filtrated water can only reach 0.3 NTU, color is 15 times and filtration period is 24 h when the filtration rate is 8 m/h. The fibrous bundle filtration technology has characteristics of small resistance and rapid filtration rate, and a good popularization value for rebuilding/extension of middle/small scale waterworks.
Keywords:fibrous bundle  micropolluted water source  uniform media  filtration
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