Interfacial mechanism and inactivation efficiency of bacteriophage MS2 by ozone in high turbidity and algal-laden water resource

被引:3
作者
Wang, Lu [1 ]
Hu, Yi-bo [1 ]
Bi, Xiaochao [1 ]
Vasanthakumar, V. [1 ]
Zhang, Zhiyong [1 ,2 ]
Fu, Ming-Lai [1 ]
Sun, Wenjie [3 ]
Yuan, Baoling [1 ,2 ]
机构
[1] Huaqiao Univ, Coll Civil Engn, Xiamen Key Lab Municipal & Ind Solid Waste Utiliza, Xiamen 361021, Fujian, Peoples R China
[2] Jilin Jianzhu Univ, Key Lab Songliao Aquat Environm, Minist Educ, Changchun 130118, Peoples R China
[3] St Cloud State Univ, Dept Atmospher & Hydrol Sci, 720 4th Ave South, St Cloud, MN 56301 USA
基金
国家自然科学基金重大项目; 中国国家自然科学基金;
关键词
Inactivation; Bacteriophage MS2; Inorganic and organic particles; Ozone; Solution chemistry; NATURAL ORGANIC-MATTER; BACILLUS-SUBTILIS SPORES; HEPATITIS-A VIRUS; SOLUTION CHEMISTRY; WASTE-WATER; DISINFECTION; OZONATION; REMOVAL; MS2; DEPOSITION;
D O I
10.1016/j.jwpe.2023.104107
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
With the onset of the COVID-19 epidemic and the measures implemented to curb the spread of the SARS-CoV-2 virus, there has been increasing attention on safe drinking water and waterborne viruses during water treatment processes. In this study, we investigate the impact of solution chemistry, including ionic strength (Na+ or Ca2+) pH, and natural organic matter (NOM), on the efficiency of MS2 bacteriophage inactivation by ozone in the presence of inorganic and organic particles (kaolinite (KAO) and microcystis aeruginosa (MA), respectively). The study results demonstrate that KAO has been found to adsorb MS2, but it does not significantly affect the inactivation of MS2 by ozone. In contrast, the inactivation of MS2 increased at low MA concentrations ranging from 10(5) to 10(6) cells/L due to MS2 dispersion, but decreased at higher concentrations ranging from 10(7) to 10(8) cells/L. The monovalent Na+ ion solutions (similar to 200 mmol/L) maintain MS2 stability and dispersion irrespective of the presence of particles, and did not affect inactivation. Additionally, MS2 aggregates in divalent C-a2+ solutions, resulting in reduced inactivation with or without particles present. Increasing the solution's pH had a negative impact on inactivation, leading to ozone reduction and weakening of the inactivation. However, the presence of NOM poses a significant risk to the safety of drinking water by reducing MS2 inactivation.
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页数:8
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