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超滤—颗粒活性炭—紫外线消毒组合工艺制备直接饮用水试验研究
引用本文:裴剑,李伟英,许京晶,陈清,张东,乐林生. 超滤—颗粒活性炭—紫外线消毒组合工艺制备直接饮用水试验研究[J]. 给水排水, 2010, 36(3)
作者姓名:裴剑  李伟英  许京晶  陈清  张东  乐林生
作者单位:1. 同济大学污染控制与资源化研究国家重点实验室,上海,200092
2. 同济大学长江水环境教育部重点实验室,上海,200092
3. 苏州立昇膜分离科技有限公司,苏州,215152
4. 上海市自来水市北有限公司,上海,200086
基金项目:国家水体污染控制与治理科技重大专项课题(2008ZX07421-006);;上海市科委世博科技专项
摘    要:采用超滤、颗粒活性炭和紫外线消毒组合工艺对自来水进行深度处理。试验表明,对水中浊度、CODMn、UV254、细菌总数的平均去除率分别为89.8%、90.7%、96.2%和94.5%,以上各参数最终出水平均值分别为0.155NTU、0.35mg/L、0.009cm-1、0CFU/mL,达到了现行《生活饮用水卫生标准》(GB5749—2006)和《饮用净水水质标准》(CJ94—2005)的要求。因此,超滤、颗粒活性炭与紫外线消毒组合工艺用于制备直接饮用水是可行的。

关 键 词:超滤  颗粒活性炭  紫外线消毒  直接饮用水  

Study on producing direct drinking water by combined process of UF-GAC-UV disinfection
Pei Jian,Li Weiying,Xu Jingjing,Chen Qing,Zhang Dong,Le Linsheng. Study on producing direct drinking water by combined process of UF-GAC-UV disinfection[J]. Water & Wastewater Engineering, 2010, 36(3)
Authors:Pei Jian  Li Weiying  Xu Jingjing  Chen Qing  Zhang Dong  Le Linsheng
Affiliation:1. State Key Laboratory of Pollution Control &Resource Reuse/a>;Tongji University/a>;Shanghai 200092/a>;China/a>;2.Key Laboratory of Yangtze River Water Environment/a>;Ministry of Education/a>;3.Suzhou Litree Ultra-Filtration Membrane Technology Co./a>;Ltd./a>;Suzhou 215152/a>;4.Shanghai Waterworks Shibei Co./a>;Shanghai 200086/a>;China
Abstract:Advanced water treatment by combined process of ultrafiltration-granular activated carbon-UV disinfection was studied.The results showed that the average removal rate of turbidity,COD_(Mn),UV_(254) and TPC were 89.8%,90.7%,96.2% and 94.5% respectively,and the final average value of above parameters in effluent were 0.155 NTU,0.35 mg/L,0.009 cm~(-1) and 0 CFU/mL respectively,which meets the current Standards for Drinking Water Quality(GB 5749-2006)and the Water Quality Standard for Fine Drinking Water(CJ 94-2005).So the combined process of ultrafiltration-granular activated carbon-UV disinfection is practicable for the direct drinking water producing.
Keywords:Ultrafiltration  Granular activated carbon  UV disinfection  Direct drinking water  
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