References

  1. J.S. Park, J.S. Kim, S.J. Kim, E.K. Shin, K.-H. Oh, Y.H. Kim, C.H. Kim, M.A. Hwang, C.M. Jin, K.G. Na, J. Lee, E.H. Cho, B.-H. Kang, H.-S. Kwak, W.-K. Seong, J. Kim, A waterborne outbreak of multiple diarrhoeagenic Escherichia coli infections associated with drinking water at a school camp, Int. J. Infect. Dis., 66 (2018) 45–50.
  2. J. Luh, J. Bartram, Drinking water and sanitation: progress in 73 countries in relation to socioeconomic indicators, Bull. World Health Organ., 94 (2015) 111–121A.
  3. K.D. Orner, J.R. Mihelcic, A review of sanitation technologies to achieve multiple sustainable development goals that promote resource recovery, Environ. Sci. Water Res. Technol., 4 (2018) 16–32.
  4. M.F. Craun, G.F. Craun, R.L. Calderon, M.J. Beach, Waterborne outbreaks reported in the United States, J. Water Health, 4 (2006) 19–30.
  5. M.M. Ahammed, V. Meera, Metal oxide/hydroxide-coated dual-media filter for simultaneous removal of bacteria and heavy metals from natural waters, J. Hazard. Mater., 181 (2010) 788–793.
  6. H. Bai, N. Cochet, A. Pauss, E. Lamy, Bacteria cell properties and grain size impact on bacteria transport and deposition in porous media, Colloids Surf., B, 139 (2016) 148–155.
  7. T.K. Stevik, K. Aa, G. Ausland, J.F. Hanssen, Retention and removal of pathogenic bacteria in wastewater percolating through porous media: a review, Water Res., 38 (2004) 1355–1367.
  8. B. Pucher, H. Ruiz, J. Paing, F. Chazarenc, P. Molle, G. Langergraber, Using numerical simulation of a one stage vertical flow wetland to optimize the depth of a zeolite layer, Water Sci. Technol., 75 (2017) 650–658.
  9. S.J. Park, S.B. Kim, Influence of (bi) carbonate on bacterial interaction with quartz and metal oxide-coated surfaces, Colloids Surf., B, 76 (2010) 57–62.
  10. J. Lukasik, Y.-F. Cheng, F. Lu, M. Tamplin, S.R. Farrah, Removal of microorganisms from water by columns containing sand coated with ferric and aluminum hydroxides, Water Res., 33 (1999) 769–777.
  11. D. Jiang, Q. Huang, P. Cai, X. Rong, W. Chen, Adsorption of Pseudomonas putida on clay minerals and iron oxide, Colloids Surf., B, 54 (2007) 217–221.
  12. Z. Hong, W. Chen, X. Rong, P. Cai, W. Tan, Q. Huang, Effects of humic acid on adhesion of Bacillus subtilis to phyllosilicates and goethite, Chem. Geol., 416 (2015) 19–27.
  13. S.M. Abit, C.H. Bolster, P. Cai, S.L. Walker, Influence of feedstock and pyrolysis temperature of biochar amendments on transport of Escherichia coli in saturated and unsaturated soil, Environ. Sci. Technol., 46 (2012) 8097–8105.
  14. S.K. Mohanty, A.B. Boehm, Escherichia coli removal in biocharaugmented biofilter: Effect of infiltration rate, initial bacterial concentration, biochar particle size, and presence of compost, Environ. Sci. Technol., 48 (2014) 11535–11542.
  15. S. Sasidharan, S. Torkzaban, S.A. Bradford, R. Kookana, D. Page, P.G. Cook, Transport and retention of bacteria and viruses in biochar-amended sand, Sci. Total Environ., 548 (2016) 100–109.
  16. N.C. Brady, R. Weil, The Colloidal Fraction: Seat of Soil Chemical and Physical Activity, In: Elements of the Nature and Properties of Soils, 3rd ed., Pearson, London, 2014, Chapter 8.
  17. X. Gu, L.J. Evans, Modelling the adsorption of Cd (II), Cu (II), Ni (II), Pb (II), and Zn (II) onto fithian illite, J. Colloid Interface Sci., 307 (2007) 317–325.
  18. N.G. Turan, S. Elevli, B. Mesci, Adsorption of copper and zinc ions on illite: determination of the optimal conditions by the statistical design of experiments, Appl. Clay Sci., 52 (2011), 392–399.
  19. J. Chen, L.-g. Yan, H.-q. Yu, S. Li, L.-l. Qin, G.-q. Liu, B. Du, Efficient removal of phosphate by facile prepared magnetic diatomite and illite clay from aqueous solution, Chem. Eng. J., 287 (2016) 162–172.
  20. B.W. Gu, S.H. Hong, C.G. Lee, S.J. Park, The feasibility of using bentonite, illite, and zeolite as capping materials to stabilize nutrients and interrupt their release from contaminated lake sediments, Chemosphere, 219 (2019) 217–226.
  21. R.S. Summers, D.R. Knappe, V.L. Snoeyink, Adsorption of Organic Compounds by Activated Carbon, J.K. Edzwald, Ed., Water Quality and Treatment: A Handbook on Drinking Water, 6th ed., McGraw-Hill, New York, 2011.
  22. M.L. Davis, Water and Wastewater Engineering, McGraw-Hill, New York, 2011.
  23. D. Barloková, J. Ilavský, Removal of iron and manganese from water using filtration by natural materials, Pol. J. Environ. Stud., 19 (2010) 1117–1122.
  24. N. Moraci, P.S. Calabrò, Heavy metals removal and hydraulic performance in zero-valent iron/pumice permeable reactive barriers, J. Environ. Manage., 91 (2010) 2336–2341.
  25. A.S. Ruhl, N. Ünal, M. Jekel, Evaluation of two-component Fe(0) fixed bed filters with porous materials for reductive dechlorination, Chem. Eng. J., 209 (2012) 401–406.
  26. T. An, J. An, H. Yang, G. Li, H. Feng, X. Nie, Photocatalytic degradation kinetics and mechanism of antivirus druglamivudine in TiO2 dispersion, J. Hazard. Mater., 197 (2011) 229–236.
  27. B. Niemczewski, Observations of water cavitation intensity under practical ultrasonic cleaning conditions, Ultrason. Sonochem., 14 (2007) 13–18.
  28. S.J. Park, C.G. Lee, S.B. Kim, The role of phosphate in bacterial interaction with iron-coated surfaces, Colloids Surf., B, 68 (2009) 79–82.
  29. T.L. Cail, M.F. Hochella Jr., The effects of solution chemistry on the sticking efficiencies of viable Enterococcus faecalis: an atomic force microscopy and modeling study, Geochim. Cosmochim. Acta, 69 (2005) 2959–2969.
  30. N. Tufenkji, M. Elimelech, Correlation equation for predicting single-collector efficiency in physicochemical filtration in saturated porous media, Environ. Sci. Technol., 38 (2004) 529–536.
  31. N.C. Brady, R.R. Weil, Elements of the Nature and Properties of Soils, No. 631.4 B733E, Upper Saddle River, Pearson Educational International, NJ, 2010.
  32. B.W. Gu, C.G. Lee, T.G. Lee, S.J. Park, Evaluation of sediment capping with activated carbon and nonwoven fabric mat to interrupt nutrient release from lake sediments, Sci. Total Environ., 599 (2017) 413–421.
  33. S.-B. Kim, S.-J. Park, C.-G. Lee, N.-C. Choi, D.-J. Kim, Bacteria transport through goethite-coated sand: effects of solution pH and coated sand content, Colloids Surf., B, 63 (2008) 236–242.
  34. A.S. Brady-Estévez, T.H. Nguyen, L. Gutierrez, M. Elimelech, Impact of solution chemistry on viral removal by a singlewalled carbon nanotube filter, Water Res., 44 (2010) 3773–3780.
  35. D.A. Ams, J.B. Fein, H. Dong, P.A. Maurice, Experimental measurements of the adsorption of Bacillus subtilis and Pseudomonas mendocina onto Fe-oxyhydroxide-coated and uncoated quartz grains, Geomicrobiol. J., 21 (2004) 511–519.
  36. J.T. Gannon, V.B. Manilal, M. Alexander, Relationship between cell surface properties and transport of bacteria through soil, J. Appl. Environ. Microbiol., 57 (1991) 190–193.
  37. T.J. Beveridge, R.G. Murray, Sites of metal deposition in the cell wall of Bacillus subtilis, J. Bacteriol., 141 (1980) 876–887.
  38. J.B. Fein, D.A. Fowle, J. Cahill, K. Kenmer, M. Boyanow, B. Bunker, Nonmetabolic reduction of Cr (VI) by bacterial surfaces under nutrient-absent conditions, Geomicrobiol. J., 19 (2002) 369–382.
  39. J.W.A. Foppen, J.F. Schijven, Transport of E. coli in columns of geochemically heterogeneous sediment, Water Res., 39 (2005) 3082–3088.
  40. D.C. Montgomery, Design and Analysis of Experiments, John Wiley & Sons, Singapore, 2004.
  41. S.J. Park, C.G. Lee, S.B. Kim, Y.Y. Chang, J.K. Yang, Bacterial removal in flow-through columns packed with iron-manganese bimetallic oxide-coated sand, J. Environ. Sci. Health., Part A, 47 (2012) 1364–1371.
  42. K. Yetilmezsoy, S. Demirel, R.J. Vanderbei, Response surface modeling of Pb (II) removal from aqueous solution by Pistacia vera L.: Box–Behnken experimental design, J. Hazard. Mater., 171 (2009) 551–562.