Pilot-scale study of efficient coagulation sedimentation of micro-polluted water
Liang Shen, Li Cheng, Heli Wang, Xinying Lian, Jingxian Qi
Abstract
Liang Shen, Li Cheng, Heli Wang, Xinying Lian, Jingxian Qi
Abstract
This pilot-scale study is based on an efficient coagulation sedimentation process technology used for micro-polluted water treatment of Beijing-Hangzhou Grand Canal(BHGC). The best coagulant among PAC, Al2(SO4)3and FeCl3and its optimal dosage were studied in coagulation sedimentation jar test. The best coagulant was PAC, and its optimal dosage was 40 mg/L. The coagulation sedimentation jar test showed that the organic removal rate could be affected by pH value definitely, and using the PAC as coagulant, water temperature had less impact on the removal rate of turbidity. The continuous experimental operation showed that the turbidity and CODMncould be scientifically removed by the efficient coagulation sedimentation operation system.
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This pilot-scale study is based on an efficient coagulation sedimentation process technology used for micro-polluted water treatment of Beijing-Hangzhou Grand Canal(BHGC). The best coagulant among PAC, Al2(SO4)3and FeCl3and its optimal dosage were studied in coagulation sedimentation jar test. The best coagulant was PAC, and its optimal dosage was 40 mg/L. The coagulation sedimentation jar test showed that the organic removal rate could be affected by pH value definitely, and using the PAC as coagulant, water temperature had less impact on the removal rate of turbidity. The continuous experimental operation showed that the turbidity and CODMncould be scientifically removed by the efficient coagulation sedimentation operation system.
Key concepts: Sedimentation, Coagulation, Turbidity, Biology, Sediment, Psychology, Ecology, Paleontology