Study on the method and mechanism of pre-pressure coagulation and sedimentation for Microcystis removal from drinking-water sources

微囊藻 沉积作用 浮力 化学 水槽(地理) 凝结 环境工程 铜绿微囊藻 环境科学 环境化学 水处理 制浆造纸工业 废物管理 地质学 蓝藻 沉积物 古生物学 地理 细菌 工程类 物理 精神科 量子力学 地图学 心理学
作者
Haibing Cong,Feng Sun,Wenjing Chen,Ya-Jun Xu,Wei Wang
出处
期刊:Environmental Technology [Taylor & Francis]
卷期号:39 (4): 433-449 被引量:12
标识
DOI:10.1080/09593330.2017.1302002
摘要

In order to effectively remove the Microcystis from drinking-water sources, pre-pressure treatment was first used to make the Microcystis lose buoyancy, and then it is easily removed by coagulation and sedimentation processes. The Microcystis-containing water from Taihu Lake was taken for the pre-pressure coagulation and sedimentation treatments in this study. Both intermittent laboratory experiment and continuous-flow field experiment were conducted. Experimental results showed that the optimum pre-pressure condition was pressuring at 0.6–0.8 MPa for at least 10 s, and 60 s was the best. Comparing with the pre-oxidation, pre-pressure could obviously increase the removal efficiency of Microcystis by following coagulation and sedimentation, and would not increase the dissolved microcystins. The mechanism of pre-pressure treatment was that the pre-pressure destroys the gas vesicles in Microcystis cells and the gas diffuses out of the cells, which leads the Microcystis to lose buoyancy and make them to sink. The recovery time of gas vesicles was longer than the sludge discharge period of sedimentation tank; therefore, the sinking Microcystis would not re-float in the sedimentation tank. In the practical application of drinking water treatment plant, the continuous-flow pressure device could be chosen, with the energy consumption of about 22.9 kw·h per 10,000 m3.
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