Dong Bowen, Huang Hui, Wang Chengyan, Zhang Xiaolong, Gao Chenyu, Su Nan, Shi Dayong, Ren Jie
Gansu Academy of Eco-Environmental Sciences Lanzhou 730030 China.
School of Environment, Harbin Institute of Technology Harbin 150090 China.
RSC Adv. 2024 Jun 4;14(25):17832-17842. doi: 10.1039/d4ra01878h. eCollection 2024 May 28.
The implementation of a dual-source water supply system offers an increased level of reliability in water provision; however, intricate hydraulic dynamics introduce apprehensions regarding water safety at the hydraulic junction. In this study, we gathered data of the water quality at the hydraulic junction of a dual-source water supply system (plant A and plant B, sampling site A was near plant A, and sampling site A was near plant B) for one year in Suzhou Industrial Park. Our findings indicated that seasonal variations and water temperature exerted significant influence on the composition and formation of disinfection byproducts (DBPs). Notably, during the warmer months spanning from June to September, the concentration of trihalomethanes was the highest at the hydraulic junction, whereas the concentration of residual chloride was the lowest. The analysis on DBPs revealed that more Br-containing precursors in water in plant A resulted in the accumulation of more Br-containing DBPs at A, whereas the highest concentration of Cl-containing DBPs accumulated at A. The analysis of the dissolved organic matter (DOM) composition indicated an increase in concentration at A and A compared with that in plant A and plant B. The highest concentration of humic acids was observed at A, whereas A accumulated the highest concentration of aromatic proteins and microbial metabolites. Owing to the fluctuations in water consumption patterns at the hydraulic junction, the water quality was susceptible to variability, thereby posing an elevated risk. Consequently, extensive efforts are warranted to ensure the maintenance of water safety and quality at this critical interface.
双源供水系统的实施提高了供水的可靠性;然而,复杂的水力动态引发了对水力交汇处水安全的担忧。在本研究中,我们收集了苏州工业园区一个双源供水系统(A厂和B厂,采样点A靠近A厂,采样点B靠近B厂)水力交汇处一年的水质数据。我们的研究结果表明,季节变化和水温对消毒副产物(DBPs)的组成和形成有显著影响。值得注意的是,在6月至9月的温暖月份,水力交汇处的三卤甲烷浓度最高,而余氯浓度最低。对DBPs的分析表明,A厂水中含溴前驱物较多,导致A处含溴DBPs积累较多,而含氯DBPs的最高浓度在B处积累。溶解有机物(DOM)组成分析表明,与A厂和B厂相比,A处和B处的浓度有所增加。腐殖酸浓度在A处最高,而B处积累了最高浓度的芳香蛋白和微生物代谢产物。由于水力交汇处用水模式的波动,水质容易发生变化,从而带来更高的风险。因此,有必要做出广泛努力,以确保在这个关键界面维持水安全和水质。