Feng Zhe, Lu Ruiqing, Yuan Baoling, Zhou Zhenming, Wu Qingqing, Nguyen Thanh H
Institute of Municipal and Environmental Engineering, College of Civil Engineering, Huaqiao University, Xiamen, Fujian 361021, PR China.
Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, 205 N. Mathews Ave., Urbana, IL 61801, United States.
Colloids Surf B Biointerfaces. 2016 Dec 1;148:622-628. doi: 10.1016/j.colsurfb.2016.09.025. Epub 2016 Sep 22.
MS2 inactivation by UV irradiance was investigated with the focus on how the disinfection efficacy is influenced by bacteriophage MS2 aggregation and adsorption to particles in solutions with different compositions. Kaolinite and Microcystis aeruginosa were used as model inorganic and organic particles, respectively. In the absence of model particles, MS2 aggregates formed in either 1mM NaCl at pH=3 or 50-200mM ionic strength CaCl solutions at pH=7 led to a decrease in the MS2 inactivation efficacy because the virions located inside the aggregate were protected from the UV irradiation. In the presence of kaolinite and Microcystis aeruginosa, MS2 adsorbed onto the particles in either 1mM NaCl at pH=3 or 50-200mM CaCl solutions at pH=7. In contrast to MS2 aggregates formed without the presence of particles, more MS2 virions adsorbed on these particles were exposed to UV irradiation to allow an increase in MS2 inactivation. In either 1mM NaCl at pH from 4 to 8 or 2-200mM NaCl solutions at pH=7, the absence of MS2 aggregation and adsorption onto the model particles explained why MS2 inactivation was not influenced by pH, ionic strength, and the presence of model particles in these conditions. The influence of virus adsorption and aggregation on the UV disinfection efficiency found in this research suggests the necessity of accounting for particles and cation composition in virus inactivation for drinking water.
研究了紫外线辐照对MS2的灭活作用,重点关注在不同成分溶液中噬菌体MS2的聚集和对颗粒的吸附如何影响消毒效果。分别使用高岭土和铜绿微囊藻作为无机和有机颗粒模型。在没有模型颗粒的情况下,在pH=3的1mM NaCl溶液或pH=7的离子强度为50-200mM的CaCl2溶液中形成的MS2聚集体导致MS2灭活效果降低,因为聚集体内的病毒粒子受到紫外线照射的保护。在存在高岭土和铜绿微囊藻的情况下,MS2在pH=3的1mM NaCl溶液或pH=7的50-200mM CaCl2溶液中吸附到颗粒上。与不存在颗粒时形成的MS2聚集体相反,吸附在这些颗粒上的更多MS2病毒粒子暴露于紫外线照射下,从而使MS2灭活增加。在pH为4至8的1mM NaCl溶液或pH=7的2-200mM NaCl溶液中,MS2不存在聚集且不吸附到模型颗粒上,这解释了为什么在这些条件下MS2的灭活不受pH、离子强度和模型颗粒存在的影响。本研究中发现的病毒吸附和聚集对紫外线消毒效率的影响表明,在饮用水病毒灭活中考虑颗粒和阳离子组成是必要的。