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实培谦等:城市再生水中大肠杆菌在浮选过程中迁移规律 ·675· Sci Technol.2012,46(16):8782 tions at different temperatures.J Hazard Mater,2012,233-234: [11]Syngouna V1.Chrysikopoulos C V.Transport of bio-colloids in 148 water saturated columns packed with sand:effect of grain size [16]Haznedaroglu B Z,Kim H N,Bradford S A,et al.Relative and pore water velocity.J Contam Hydrol,2011,126(3):301 transport behavior of Escherichia coli 0157:H7 and salmonella [12]Lutterodt G,Foppen J W A,Uhlenbrook S.Transport of Esche- enteric serovar pullorum in packed bed column systems:influ- richia coli strains isolated from natural spring water.Contam ence of solution chemistry and cell concentration.Enriron Sci Hdo.2012,140-141:12 Technol,2009,43(6):1838 [13]Ngwenya B T,Curry P,Kapetas L.Transport and viability of [17]Williams L B,Metge D W,Eberl DD,et al.What makes a nat- Escherichia coli cells in clean and iron oxide coated sand follow- ural clay antibacterial?Enriron Sci Technol,2011,45 (8): ing coating with silver nanoparticles.J Contam Hydrol,2015, 3768 179:35 [18]Terada A,Okuyama K,Nishikawa M,et al.The effect of sur- [14]Yakirevich A,Pachepsky Y A.Guber A K,et al.Modeling face charge property on Escherichia coli initial adhesion and sub- transport of Escherichia coli in a creek during and after artificial sequent biofilm formation.Biotechnol Bioeng,2012.109(7): high-flow events:three-year study and analysis.Water Res, 1745 2013,47(8):2676 [19]Bellou MI,Syngouna V I,Tselepi M A,et al.Interaction of hu- [15]Chrysikopoulos C V,Aravantinou A F.Virus inactivation in the man adenoviruses and coliphages with kaolinite and bentonite. presence of quartz sand under static and dynamic batch condi- Sci Total Environ,2015,517:86窦培谦等: 城市再生水中大肠杆菌在浮选过程中迁移规律 Sci Technol, 2012, 46(16): 8782 [11] Syngouna V I, Chrysikopoulos C V. Transport of bio鄄colloids in water saturated columns packed with sand: effect of grain size and pore water velocity. J Contam Hydrol, 2011, 126(3): 301 [12] Lutterodt G, Foppen J W A, Uhlenbrook S. Transport of Esche鄄 richia coli strains isolated from natural spring water. J Contam Hydrol, 2012, 140鄄141: 12 [13] Ngwenya B T, Curry P, Kapetas L. Transport and viability of Escherichia coli cells in clean and iron oxide coated sand follow鄄 ing coating with silver nanoparticles. J Contam Hydrol, 2015, 179: 35 [14] Yakirevich A, Pachepsky Y A, Guber A K, et al. Modeling transport of Escherichia coli in a creek during and after artificial high鄄flow events: three鄄year study and analysis. Water Res, 2013, 47(8): 2676 [15] Chrysikopoulos C V, Aravantinou A F. Virus inactivation in the presence of quartz sand under static and dynamic batch condi鄄 tions at different temperatures. J Hazard Mater, 2012, 233鄄234: 148 [16] Haznedaroglu B Z, Kim H N, Bradford S A, et al. Relative transport behavior of Escherichia coli O157:H7 and salmonella enteric serovar pullorum in packed bed column systems: influ鄄 ence of solution chemistry and cell concentration. Environ Sci Technol, 2009, 43(6): 1838 [17] Williams L B, Metge D W, Eberl D D, et al. What makes a nat鄄 ural clay antibacterial? Environ Sci Technol, 2011, 45 ( 8 ): 3768 [18] Terada A, Okuyama K, Nishikawa M, et al. The effect of sur鄄 face charge property on Escherichia coli initial adhesion and sub鄄 sequent biofilm formation. Biotechnol Bioeng, 2012, 109 (7 ): 1745 [19] Bellou M I, Syngouna V I, Tselepi M A, et al. Interaction of hu鄄 man adenoviruses and coliphages with kaolinite and bentonite. Sci Total Environ, 2015, 517: 86 ·675·
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