Department of Civil, Geological, and Mining Engineering, Polytechnique Montreal, Montreal, QC, H3C 3A7, Canada.
Department of Civil Engineering, Monash University, Clayton Campus, Melbourne, Australia.
Environ Monit Assess. 2023 Aug 17;195(9):1042. doi: 10.1007/s10661-023-11657-0.
Worldwide, there has been an increase in the presence of potentially toxic cyanobacterial blooms in drinking water sources and within drinking water treatment plants (DWTPs). The objective of this study is to validate the use of in situ probes for the detection and management of cyanobacterial breakthrough in high and low-risk DWTPs. In situ phycocyanin YSI EXO2 probes were devised for remote control and data logging to monitor the cyanobacteria in raw, clarified, filtered, and treated water in three full-scale DWTPs. An additional probe was installed inside the sludge holding tank to measure the water quality of the surface of the sludge storage tank in a high-risk DWTP. Simultaneous grab samplings were carried out for taxonomic cell counts and toxin analysis. A total of 23, 9, and 4 field visits were conducted at the three DWTPs. Phycocyanin readings showed a 93-fold fluctuation within 24 h in the raw water of the high cyanobacterial risk plant, with higher phycocyanin levels during the afternoon period. These data provide new information on the limitations of weekly or daily grab sampling. Also, different moving averages for the phycocyanin probe readings can be used to improve the interpretation of phycocyanin signal trends. The in situ probe successfully detected high cyanobacterial biovolumes entering the clarification process in the high-risk plant. Grab sampling results revealed high cyanobacterial biovolumes in the sludge for both high and low-risk plants.
在全球范围内,饮用水源和饮用水处理厂(DWTP)中潜在有毒蓝藻水华的出现呈上升趋势。本研究的目的是验证原位探针在高风险和低风险 DWTP 中用于检测和管理蓝藻突破的应用。为了远程控制和数据记录,设计了原位藻蓝蛋白 YSI EXO2 探针,以监测三个全规模 DWTP 中的原水、澄清、过滤和处理水中的蓝藻。在一个高风险 DWTP 中,在污泥储槽内部安装了一个额外的探头,以测量污泥储槽表面的水质。同时进行了分类细胞计数和毒素分析的现场抓取采样。在三个 DWTP 中总共进行了 23、9 和 4 次现场访问。在高蓝藻风险工厂的原水中,藻蓝蛋白读数在 24 小时内波动了 93 倍,下午期间藻蓝蛋白水平更高。这些数据提供了关于每周或每日抓取采样的局限性的新信息。此外,可以使用不同的藻蓝蛋白探头读数的移动平均值来提高对藻蓝蛋白信号趋势的解释。原位探头成功地检测到高风险工厂中进入澄清过程的高蓝藻生物量。抓取采样结果显示,高风险和低风险工厂的污泥中都存在高蓝藻生物量。