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有毒蓝藻在饮用水厂的突破和积累:监测和处理的挑战。

Toxic cyanobacterial breakthrough and accumulation in a drinking water plant: a monitoring and treatment challenge.

机构信息

École Polytechnique de Montreal, Civil, Mineral and Mining Engineering Department, P.O. Box 6079, Station Centre-ville, Montreal, Quebec, Canada.

出版信息

Water Res. 2012 Apr 1;46(5):1511-23. doi: 10.1016/j.watres.2011.11.012. Epub 2011 Nov 17.

Abstract

The detection of cyanobacteria and their associated toxins has intensified in recent years in both drinking water sources and the raw water of drinking water treatment plants (DWTPs). The objectives of this study were to: 1) estimate the breakthrough and accumulation of toxic cyanobacteria in water, scums and sludge inside a DWTP, and 2) to determine whether chlorination can be an efficient barrier to the prevention of cyanotoxin breakthrough in drinking water. In a full scale DWTP, the fate of cyanobacteria and their associated toxins was studied after the addition of coagulant and powdered activated carbon, post clarification, within the clarifier sludge bed, after filtration and final chlorination. Elevated cyanobacterial cell numbers (4.7 × 10(6)cells/mL) and total microcystins concentrations (up to 10 mg/L) accumulated in the clarifiers of the treatment plant. Breakthrough of cells and toxins in filtered water was observed. Also, a total microcystins concentration of 2.47 μg/L was measured in chlorinated drinking water. Cyanobacterial cells and toxins from environmental bloom samples were more resistant to chlorination than results obtained using laboratory cultured cells and dissolved standard toxins.

摘要

近年来,在饮用水水源和饮用水处理厂(DWTP)的原水中,对蓝藻及其相关毒素的检测日益加强。本研究的目的是:1)估计 DWTP 内水中、浮渣和污泥中有毒蓝藻的突破和积累情况,2)确定氯化是否可以有效防止饮用水中蓝藻毒素的突破。在一个全规模的 DWTP 中,在添加混凝剂和粉末活性炭后,在澄清器的污泥床内,在过滤和最终氯化后,研究了蓝藻及其相关毒素的命运。在处理厂的澄清器中,蓝藻细胞数量(4.7×10^6 个/mL)和总微囊藻毒素浓度(高达 10mg/L)升高。在过滤水中观察到细胞和毒素的突破。此外,在氯化饮用水中还测量到 2.47μg/L 的总微囊藻毒素浓度。来自环境水华样本的蓝藻细胞和毒素比使用实验室培养的细胞和溶解标准毒素获得的结果更能抵抗氯化作用。

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