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 
Ahn J, Kim J, Min S, 2016, Feasibility of Phosphorus Recovery from Biological Livestock Wastewater Treatment Plant, [Korean Literature], Journal of Korea Society on Water Environment, Vol. 32, No. 4, pp. 343-348DOI
2 
American Public Health Association, American Water Works Association, and Water Environment Federation (APHA, AWWA, and WEF), 1989, Standard Methods for the Examination of Water and Wastewater, American Public Health Association, American Water Works Association, and Water Environment Federation
3 
Bond P.L, Keller J, Blackall L, 1999, Anaerobic Phosphate Release from Activated Sludge with Enhaned Biological Phosphorus Removal, A possible Mechanism of Intracellular pH Control, Biotechnology and Bioengineering, Vol. 63, pp. 507-515DOI
4 
Dogan I, Sanin F, 2009, Alkaline Solubilization and Microwave Irradiation as a Combined Sludge Disintegration and Minimization Method, Water Research, Vol. 43, pp. 2139-2148DOI
5 
Eskicioglu C, Terzian N, Kennedy K, Droste R, Hamoda M, 2007, Athermal Microwave Effects for Enhancing Digestibility of Waste Activated Sludge, Water Research, Vol. 41, pp. 2457-2466DOI
6 
Hirota R, Kuroda A, Kato J, Ohtake H, 2010, Bacterial Phosphate Metabolism and Its Application to Phosphorus Recovery and Industrial Bioprocesses, Journal of Bioscience and Bioengineering, Vol. 109, pp. 423-432DOI
7 
Kashihara H, Kang B, Omasa T, Honda K, Sameshima Y, Kuroda A, Ohtake H, 2010, Electron Microscopic Analysis of Heat-Induced Leakage of Polyphosphate from a phoU Mutant of Escherichia coli, Bioscience, Biotechnology, and Biochemistry, Vol. 74, pp. 865-868DOI
8 
Kim M, Han D, Kim D, 2015, Selective Release of Phosphorus and Nitrogen from Waste Activated Sludge with Combined Thermal and Alkali Treatment, Bioresource Technology, Vol. 190, pp. 522-528DOI
9 
Kuroda A, Takiguchi N, Gotanda T, Nomura K, Kato J, Ikeda T, Ohtake H, 2002, A Simple Method to Release Polyphosphate from Activated Sludge for Phosphorus Reuse and Recycling, Biotechnology and Bioengineering, Vol. 78, pp. 333-338DOI
10 
Liao P, Wong W, Lo K, 2005, Release of Phosphorus from Sewage Sludge using Microwave Technology, Journal of Environmental Engineering and Science, Vol. 4, pp. 77-81DOI
11 
Lin L, Yuan S, Chen J, Xu Z, Lu X, 2009, Removal of Ammonia Nitrogen in Wastewater by Microwave Radiation, Journal of Hazardous Materials, Vol. 161, pp. 1063-1068DOI
12 
Santinelli M, Eusebi A.L, Santini M, Battistoni P, 2013, Struvite Crystallization for Anaerobic Digested Supernatants: Influence on the Ammonia Efficiency of the Process Variables and the Chemicals Dosage Modality, Chemical Engineering Transactions, Vol. 32, pp. 2047-2052Google Search
13 
Seviour R, Mino T, Onuki M, 2003, The Microbiology of Biological Phosphorus Removal in Activated Sludge Systems, FEMS Microbiology Reviews, Vol. 27, pp. 99-127DOI
14 
Snoeyink V, Jenkins D, 1980, Water Chemistry, John Wiley & Sons
15 
Tchobanoglous G, Burton F, Stensel H, 2004, Wastewater Engineering, Treatment and Reuse, McGraw-Hill, pp. 611-629
16 
Wingender J, Neu T, Flemming H, 1999, Microbial Extracellular Polymeric Substances: Characterization, Structure and Function, Springer-Verlag, pp. 171-200
17 
Xu Y, Hu H, Liu J, Luo J, Qian G, Wang A, 2015, pH Dependent Phosphorus Release from Waste Activated Sludge: Contributions of Phosphorus Speciation, Chemical Engineering Journal, Vol. 267, pp. 260-265DOI
18 
Zhang H, Fan W, Wang Y, Sheng G, Xia C, Zeng R, Yu H, 2013, Species of Phosphorus in the Extracellular Polymeric Substances of EBPR Sludge, Bioresource Technology, Vol. 142, pp. 714-718DOI
19 
Zhang M, Kuba T, 2014, Inhibitory Effect of Metal Ions on the Polyphosphate Release from Sewage Sludge during Thermal Treatment, Environmental Technology, Vol. 35, pp. 1157-1164DOI