The Journal of
the Korean Society on Water Environment

The Journal of
the Korean Society on Water Environment

Bimonthly
  • ISSN : 2289-0971 (Print)
  • ISSN : 2289-098X (Online)
  • KCI Accredited Journal

Editorial Office

1 
Baek Y. A., Joe W. H., Kim J. M., Choi Y. J., 2007, Reduced Post Chlorine Dosage Required for Disinfection: Improvement with Ozonation and GAC Process, Korean Society of Water and Wastewater, Baek, Y. A., Joe, W. H., Kim, J. M., and Choi, Y. J. (2007). Reduced Post Chlorine Dosage Required for Disinfection: Improvement with Ozonation and GAC Process, Korean Society of Water and Wastewater, 21(4), pp. 455-452. [Korean Literature], Vol. 21, No. 4, pp. 455-452Google Search
2 
Choi J. S., Lee D. H., Lee K. H., Joo H. J., 2014, Removal of High Concentration Geosmin Using a GAC Filter and a Cross Flow Type Membrane Filtration Process Combined with PAC, Desalination and Water Treatment, Choi, J. S., Lee, D. H., Lee, K. H., and Joo, H. J. (2014). Removal of High Concentration Geosmin Using a GAC Filter and a Cross Flow Type Membrane Filtration Process Combined with PAC, Desalination and Water Treatment, 53(9), pp.1-10., Vol. 53, No. 9, pp. 1-10Google Search
3 
Gang D. D., Segar R. L., Clevenger T. E., Banerji S. K., 2002, Using Chlorine Demand to Predict TTHM and HAA9 Formation, Journal American Water Works Association, Gang, D. D., Segar Jr., R. L., Clevenger, T. E., and Banerji, S. K. (2002). Using Chlorine Demand to Predict TTHM and HAA9 Formation, Journal American Water Works Association, 94(10), pp. 76-86., Vol. 94, No. 10, pp. 76-86Google Search
4 
Ishii H., Nishijima M., Abe T., 2004, Characterization of Degradation Process of Cyanobacterial Hepatotoxins by a Gram-negative Aerobic Bacterium, Water Research, Ishii, H., Nishijima, M., and Abe, T. (2004). Characterization of Degradation Process of Cyanobacterial Hepatotoxins by a Gram-negative Aerobic Bacterium, Water Research, 38(11), pp. 2667-2676., Vol. 38, No. 11, pp. 2667-2676DOI
5 
Kameya T., Hada T., Urano K., 1998, Changes of Adsorption Capacity and Pore Distribution of Biological Activated Carbon on Advanced Water Treatment, Water Science Technology, Kameya, T., Hada, T., and Urano, K. (1998). Changes of Adsorption Capacity and Pore Distribution of Biological Activated Carbon on Advanced Water Treatment, Water Science Technology, 35(7), pp. 155-162., Vol. 35, No. 7, pp. 155-162Google Search
6 
Kim S. S., Seo G. T., 2011, Effect of Fluidized Bed Powdered Activated Carbon Impregnated by Iron Oxide Nano-particles on Enhanced Operation and NOM Removal of MF Membrane System, Journal of Korean Society of Environmental Engineer, Kim, S. S. and Seo, G. T. (2011). Effect of Fluidized Bed Powdered Activated Carbon Impregnated by Iron Oxide Nano-particles on Enhanced Operation and NOM Removal of MF Membrane System, Journal of Korean Society of Environmental Engineer, 33(5). pp. 332-339. [Korean Literature], Vol. 33, No. 5, pp. 332-339DOI
7 
Maria D. K., Chun H. K., Yangali V. A. Q., Bas G. J. H., Jan C. S., 2005, Natural Organic Matter (NOM) Fouling of Ultrafiltration Membranes: Fractionation of NOM in Surface Water and Characterization by LC-OCD, Desalination, Maria, D. K., Chun, H. K., Yangali, V. A. Q., Bas, G. J. H., and Jan, C. S. (2005). Natural Organic Matter (NOM) Fouling of Ultrafiltration Membranes: Fractionation of NOM in Surface Water and Characterization by LC-OCD, Desalination, 178(1-3), pp. 73-83., Vol. 178, No. 1-3, pp. 73-83DOI
8 
2010, Water Supply Facilities Standard, Ministry of Environment (MOE). (2010). Water Supply Facilities Standard, Ministry of Environment. [Korean Literature]Google Search
9 
2011, Drinking Water Quality Monitoring Guideline, Ministry of Environment (MOE). (2011). Drinking Water Quality Monitoring Guideline, Ministry of Environment. [Korean Literature]Google Search
10 
2012, Water Treatment Plant Algae Corresponding Guidelines, Ministry of Environment (MOE). (2012). Water Treatment Plant Algae Corresponding Guidelines, Ministry of Environment. [Korean Literature]Google Search
11 
Nishijima W., Speitel G. E., 2004, Fate of Biodegradable Dissolved Organic Carbon Produced by Ozonation on Biological Activated Carbon, Chemosphere, Nishijima, W. and Speitel Jr., G. E. (2004). Fate of Biodegradable Dissolved Organic Carbon Produced by Ozonation on Biological Activated Carbon, Chemosphere, 56(2), pp. 113-119., Vol. 56, No. 2, pp. 113-119DOI
12 
Oh H. K., Kim H. C., Ku Y. H., Yu M. J., Park H., Chang H. S., 2003, Characterization and Disinfection ByProduct Formation Potential of Natural Organic Matter in Drinking Water Treatment, Journal of Korean Society of Environmental Engineer, Oh, H. K., Kim, H. C., Ku, Y. H., Yu, M. J., Park, H., and Chang, H. S. (2003). Characterization and Disinfection ByProduct Formation Potential of Natural Organic Matter in Drinking Water Treatment, Journal of Korean Society of Environmental Engineer, 25(10), pp. 1252-1257. [Korean Literature], Vol. 25, No. 10, pp. 1252-1257Google Search
13 
Park J. H., 2006, A Study of Pretreatment on the Efficiency of Membrane Filtration Process, Master’s Thesis, Park, J. H. (2006). A Study of Pretreatment on the Efficiency of Membrane Filtration Process, Master’s Thesis, Changwon National University, pp. 25-30. [Korean Literature], pp. 25-30Google Search
14 
Stewart M. H., Wolfe R. L., Means E. G., 1990, Assessment of the Bacteriological Activity Associated with Granular Activated Carbon Treatment of Drinking Water, Applied and Environmental Microbiology, Stewart, M. H., Wolfe, R. L., and Means, E. G. (1990). Assessment of the Bacteriological Activity Associated with Granular Activated Carbon Treatment of Drinking Water, Applied and Environmental Microbiology, 56(12), pp. 3822-3829., Vol. 56, No. 12, pp. 3822-3829Google Search
15 
Thurman E. M., 1985, Organic Geochemistry of Natural Waters, Developments in Biogeochemistry, Thurman, E. M. (1985). Organic Geochemistry of Natural Waters, Developments in Biogeochemistry, 2, pp. 1-489., Vol. 2, pp. 1-489Google Search
16 
Westerhoff P., Rodriguez-Hernandeza M., Bakerb L., Sommerfeld M., 2005, Seasonal Occurrence and Degradation of 2-methylisoborneol in Water Supply Reservoirs, Water Research, Westerhoff, P., Rodriguez-Hernandeza, M., Bakerb, L., and Sommerfeld, M. (2005). Seasonal Occurrence and Degradation of 2-methylisoborneol in Water Supply Reservoirs, Water Research, 39(20), pp. 4899-4912., Vol. 39, No. 20, pp. 4899-4912DOI
17 
Wetzel R. G., 1984, Limnology: Lake and River Ecosystems, Wetzel, R. G. (1984). Limnology: Lake and River Ecosystems, Elsevier Academic Press, 3rd edition, pp. 972-985., pp. 972-985Google Search
18 
Whelton A. J., Dietrich A. M., 2004, Relationship Between Intensity, Concentration and Temperature for Drinking Water Odorants, Water Research, Whelton, A. J. and Dietrich, A. M. (2004). Relationship Between Intensity, Concentration and Temperature for Drinking Water Odorants, Water Research, 38, pp. 1604-1614., Vol. 38, pp. 1604-1614DOI
19 
Zhang Q., Kuang W. F., Liu L. Y., Li K., Wong K. H., Chow A. T., Wong P. K., 2009, Trihalomethane, Haloacetonitrile and Chloral Hydrate Formation Potentials of Organic Carbon Fractions from Sub-tropical Forest Soils, Journal of Hazardous Materials, Zhang, Q., Kuang, W. F., Liu, L. Y., Li, K., Wong, K. H., Chow, A. T., and Wong, P. K. (2009). Trihalomethane, Haloacetonitrile and Chloral Hydrate Formation Potentials of Organic Carbon Fractions from Sub-tropical Forest Soils, Journal of Hazardous Materials, 172, pp. 880-887., Vol. 172, pp. 880-887DOI