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MIB-derived odor management based upon hydraulic regulation in small drinking water reservoirs: Principle and application

水力停留时间 水质 气味 环境科学 环境工程 蓝藻 污水处理 生化工程 生物 生态学 工程类 遗传学 神经科学 细菌
作者
Jinping Lu,Ming Su,Yuliang Su,Jiao Fang,Michael D. Burch,Tengxin Cao,Bin Wu,Jianwei Yu,Min Yang
出处
期刊:Water Research [Elsevier BV]
卷期号:244: 120485-120485 被引量:7
标识
DOI:10.1016/j.watres.2023.120485
摘要

The musty odorant (2-methylisoborneol, MIB) is prevalent in source water reservoirs and has become one of the major challenges for drinking water quality. This study proposes an approach to control the growth of MIB-producing cyanobacteria in a small reservoir based on hydraulic regulation, according to the results of long-term field investigations, laboratory culture experiments, model construction, and field application. Field investigations found that longer hydraulic retention time (HRT) is a factor that triggers MIB episodes. The culture study revealed that the maximum cell density, growth rate of MIB-producing Planktothricoides raciborskii, and MIB concentration are determined by the HRT (R2= 0.94, p-value < 0.001) and can be minimized by decreasing the HRT to less than 10 d. On this basis, an HRT regulation model was constructed and validated by field investigation, and critical HRT values were evaluated for 14 cyanobacteria genera. By decreasing the HRT to 5.4 ± 0.8 d, which is lower than the critical value of 7.5 ∼ 15.0 d, an MIB episode was successfully terminated in ZXD Reservoir in 2021. The results suggest that the proposed principle can provide a scientific basis for HRT regulation, which has been proved to be effective and feasible. This approach avoids negative impacts on water quality, does not require extra investment in engineering infrastructure, and in some cases may be applied readily by changing existing operational procedures. Therefore, HRT-based regulation is a promising strategy targeting MIB control and possibly for other cyanobacterial-derived water quality problems in small reservoirs.
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