浊度
超滤(肾)
溶解有机碳
膜污染
原水
流出物
化学
过滤(数学)
粉末活性炭处理
水处理
陶瓷膜
氨
制浆造纸工业
总有机碳
环境化学
水质
结垢
环境工程
环境科学
活性炭
膜
色谱法
吸附
有机化学
生态学
工程类
统计
生物
生物化学
数学
作者
Guo Jian-ning,Lingyun Wang,Jia Zhu,Jianguo Zhang,Deyang Sheng,Xihui Zhang
出处
期刊:
日期:2013-07-09
卷期号:48 (11): 1413-1419
被引量:8
标识
DOI:10.1080/10934529.2013.781897
摘要
This article presents a highly integrated hybrid process for the advanced treatment of drinking water in dealing with the micro-polluted raw water. A flat sheet ceramic membrane with the pore size of 50∼60 nm for ultrafiltration (UF) is used to integrate coagulation and ozonation together. At the same time, biological activated carbon filtration (BAC) is used to remove the ammonia and organic pollutants in raw water. A pilot study in the scale of 120 m(3)/d has been conducted in Southern China. The mainly-analyzed parameters include turbidity, particle counts, ammonia, total organic carbon (TOC), UV254, biological dissolved organic carbon (BDOC), dissolved oxygen (DO) as well as trans-membrane pressure (TMP). The experiments demonstrated that ceramic UF-membrane was able to remove most of turbidity and suspended particulate matters. The final effluent turbidity reached to 0.14 NTU on average. BAC was effective in removing ammonia and organic matters. Dissolved oxygen (DO) is necessary for the biodegradation of ammonia at high concentration. The removal efficiencies reached to 90% for ammonia with the initial concentration of 3.6 mg/L and 76% for TOC with the initial concentration of 3.8 mg/L. Ozonation can alter the molecular structure of organics in terms of UV254, reduce membrane fouling, and extend the operation circle. It is believed the hybrid treatment process developed in this article can achieve high performance with less land occupation and lower cost compared with the conventional processes. It is especially suitable for the developing countries in order to obtain high-quality drinking water in a cost-effective way.
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