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 
Alex J., Benedetti L., Copp J., Gernaey K.V., Jeppsson U., Nopens I., Pons M.N., Rieger L., Rosen C., Steyer J.P., Vanrolleghem P., Winkler S., 2008, Benchmark Simulation Model no.1 (BSM1), Department of Industrial Electrical Engineering and Automation Lund University, pp. 19-20
2 
Dold P.L., 1991, Incorporation of Biological Excess Phosphorus Removal in a General Activated Sludge Model, Department of Civil Engineering and Engineering Mechanics, McMaster University, pp. 486-489
3 
Hem L., Rusten B., Odegaard H., 1994, Nitrification in a Moving Bed Reactor, Water Research, Vol. 28, pp. 1425-1433Google Search
4 
Henze M., Gujer W., Mino T., van Loosdrecht M., 2000, Activated Sludge Models ASM1, ASM2, ASM2d and ASM3, IWA Publishmg, pp. 10-15
5 
Hidakaa T., Tsunoa H., 2004, Development of a biological filtration model applied for advanced treatment of sewage, Water Research, Vol. 38, pp. 335-346Google Search
6 
Jung C.S., Park J.J., Ju D.J., Kwon S.Y., Choi W.S., Byum I.G., Park T.J., 2007, Effects of Nitrifying Bacterial Communities with Different HRTs and Backwashing Periods in Modified BAF Process, [Korean Literature], Korean Society of Water Environment, Vol. 23, No. 6, pp. 920-926Google Search
7 
Kim M.O., Tian D.J., Lee B., Bae J.H., Jun H.B., 2011, [Korean Literature], Anoxic Primary Clarifier - Aerated biofilter (APC-AF), Korean Society on Water Environment and Korean Society of Water and Wastewater, pp. 69-70
8 
Mann A.T., Stephenson T., 1995, Modelling biological aerated filters for wastewater treatment, Water Research, Vol. 31, pp. 2443-2448Google Search
9 
Marais G.V.R., Ekama G.A., 1976, The Activated Sludge Process: Part I-Steady State Behaviour, Water SA, Vol. 2, pp. 164-200Google Search
10 
Odegaard H., Rusten B., Westrum T., 1994, A New Moving Bed Biofilm Reactor-Application and Results, pp. 221-229
11 
Sen D., Randall C.W., 2008a, Improved Computational Model (AQUIFAS) for Activated Sludge, IFAS and MBBR Systems, Part I: Semi-Empirical Model Development, Water Environment Research, Vol. 80, pp. 486-489Google Search
12 
Sen D., Randall C.W., 2008b, Improved Computational Model (AQUIFAS) for Activated Sludge, IFAS and MBBR Systems, Part II: Semi-Empirical Model Development, Water Environment Research, Vol. 80, pp. 624-632Google Search
13 
Shen J., He R., Wang L., Han W., Li J., Sun X., 2009, Kinetics of COD Removal in a Biological Aerated Filter in the Presence of 2,4,6-Trinitrophenol (Picric Acid), Chinese Journal of Chemical Engineering, Vol. 17, pp. 1021-1026Google Search
14 
Tchobanoglous G., Schroeder E.D., 1985, Water Quality, Characteristics, Modeling, Modification, Addision-Wesley Publishing Company
15 
Wanga C., Lib J., Wangc B., Zhangd G., 2005, Development of an empirical model for domestic wastewater treatment by biological aerated filter, Process Biochemistry, Vol. 41, pp. 778-782Google Search
16 
Water Environment Federation (WEF), 2010, Biofilm Reactors, WEF Manual of Practice No.35, Water Environmental Federation, pp. 478-552
17 
Wentzel M.C., Ekama G.A., Marais G.V.R., 1991, Kinetics of Nitrification Denitrification Biological Excess Phosphorus Removal Systems-A Review, Water Science and Technology, Vol. 23, pp. 555-565Google Search
18 
Wilderer P.A., 2003, Biofilms in Wastewater Treatment, IWA publishing, pp. 3-6
19 
Yoo I.K., 2014, Nitrification Characteristics Depending on Influent Nitrogen Concentration in a Biological Aerated Filter, [Korean Literature], Korean Society of Water Environment, Vol. 30, No. 1, pp. 1-7Google Search
20 
Yang J., Kang B., Kang H., Choi M., Lim K., 2009, [Korean Literature], Fractional Experiments for Tertiary Treatment using the BAF Process, Korean Society on Water Environment and Korean Society of Water and Wastewater, pp. 813-814