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 
American Public Health Association (APHA), American Water Works Association(AWWA), and Water Environment Federation (WEF), 1992, Standard Methods for the Examination of Water and Wastewater, APHA, AWWA, WEF
2 
Cho S.J, Kang M.J, Kwon H, Lee J.W, Kim S.D, 2013, Evaluation on the Effectiveness of Low Impact Development Practices in an Urban Area: Non-point Pollutant Removal Measures Using EPA-SWMM, [Korean Literature], Journal of Korean Society on Water Environment, Vol. 29, No. 4, pp. 466-475Google Search
3 
Davis A.P, Shokouhian M, Sharma H, Minami C, Winogradoff D, 2003, Water Quality Improvement through Bioretention: Lead, Copper, and Zinc Removal, Water Environment Research, Vol. 75, No. 1, pp. 73-82DOI
4 
Endreny T, Collins V, 2009, Implications of Biretention Basin Spatial Arrangements on Stormwater Recharge and Groundwater Mounding, Ecological Engineering, Vol. 35, pp. 670-677DOI
5 
Flores P.E, Maniquiz-Redillas M.C, Tobio J.S, Kim L.H, 2015, Evaluation on the Hydrologic Effects After Applying an Infiltration Trench and a Tree Box Filter as Low Impact Development (LID) Techniques, Journal of Korean Society on Water Environment, Vol. 31, No. 1, pp. 12-18DOI
6 
Geronimo F.K.F, Maniquiz-Redillas M.C, Tobio J.A.S, Kim L.H, 2014, Treatment of Suspended Solids and Heavy Metals from Urban Stormwater Runoff by a Tree Box Filter, Water Science & Technology, Vol. 69, No. 12, pp. 2460-2467DOI
7 
Kalra T.P, 1998, Handbook of Reference Methods for Plant Analysis, Soil and Plant Analysis Council, Inc
8 
Kazemi F, Beecham S, Gibbs J, 2011, Streetscape Biodiversity and the Role of Bioretention Swales in an Australian Urban Environment, Landscape and Urban Planning, Vol. 101, pp. 139-148DOI
9 
Khan U.T, Valeo C, Chu A, Van Duin B, 2012, Bioretention Cell Efficacy in Cold Climates: Part 1 - Hydrologic Performance, Canadian Journal of Civil Engineering, Vol. 39, pp. 1210-1221DOI
10 
Kim M.H, Sung C.Y, Li M.H, Chu K.H, 2011, Bioretention for Stormwater Quality Improvement in Texas: Removal Effectiveness of Escherichia Coli, Separation and Purification Technology, Vol. 84, pp. 120-124DOI
11 
Kim J.J, Kim T.D, Choi D.H, Jeon J.H, 2011, Design of Structural BMPs for Low Impact Development Application and Modelling its Effect on Reduction of Runoff and Nonpoint Source Pollution: Application of LIDMOD2, [Korean Literature], Journal of Korean Society on Water Environment, Vol. 27, No. 5, pp. 580-586Google Search
12 
Kluge B, Markert A, Facklam M, Sommer H, Kaiser M, Pallasch M, Wessolek G, 2016, Metal Accumulation and Hydraulic Performance of Bioretention Systems After Long-term Operation, Journal of Soils and Sediments, Vol. 8, pp. 1-11DOI
13 
Li M.H, Swapp M, Kim M.H, Chu K.H, Sung C.Y, 2014, Comparing Bioretention Design with and Without an Internal Water Storage Layer for Treating Highway Runoff, Water Environment Research, Vol. 86, pp. 1-11DOI
14 
Liu J, Sample D.J, Bell C, Guan Y, 2014, Review and Research Needs of Bioretention Used for the treatment of Urban Stormwater, Water, Vol. 6, pp. 1069-1099DOI
15 
Mangangka I, Liu A, Egodawatta P, Goonetilleke A, 2015, Performance Characterisation of a Stormwater Treatment Bioretention Basin, Journal of Environmental Management, Vol. 150, pp. 173-178DOI
16 
Maniquiz-Redillas M.C, Kim L.H, 2016, Evaluation of the Capability of Low-impact Development Practices for the Removal of Heavy Metal from Urban Stormwater Runoff, Environmental Technology, Vol. 37, No. 18, pp. 2265-2272DOI
17 
Thompson A.M, Paul A.C, Balster N.J, 2008, Physical and Hydraulic Properties of Engineered Soil Media for Bioretention Basins, American Society of Agricultural and Biological Engineers, Vol. 51, No. 2, pp. 499-514DOI
18 
Trowsdale S.A, Simcock R, 2011, Urban Stormwater Treatment Using Bioretention, Journal of Hydrology, Vol. 397, pp. 167-174DOI