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 
Adav S.S, Lee D.J, Lai J.Y, 2007, Effect of Aeration Intensity on Formation of Phenol-fed Aerobic Granules and Extracellular Polymeric Substances, Applied Microbiology and Biotechnology, Vol. 77, pp. 175-182DOI
2 
Angela M, Beatrice B, Mathieu S, 2011, Biologically Induced Phosphorus Precipitation in Aerobic Granular Sludge Process, Water Research, Vol. 45, pp. 3776-3786DOI
3 
Angela M, Mathieu P, Beatrice B, Mathieu S, 2012, Parameters Influencing Calcium Phosphate Precipitation in Granular Sludge Sequencing Batch Reactor, Chemical Engineering Science, Vol. 77, pp. 165-175DOI
4 
American Public Health Association, American Water Works Association and Water Environment Federation (APHA, AWWA and WEF), 2005, Standard Methods for the Examination of Water and Wastewater, Washington DC, USA
5 
Beun J.J, Hendriks A, Van Loosdrecht M.C.M, 1999, Aerobic Granulation in a Sequencing Batch Reactor, Water Research, Vol. 33, No. 10, pp. 2283-2290DOI
6 
Carvalho G, Meyer R.L, Yuan Z, Keller J, 2006, Differential Distribution of Ammonia- and Nitrite-oxidising Bacteria in Flocs and Granules from a Nitrifying/denitrifying Sequencing Batch Reactor, Enzyme and Microbial Technology, Vol. 39, pp. 1392-1398DOI
7 
Coma M, Puig S, Balaguer M.D, Colprim J, 2010, The Role of Nitrate and Nitrite in a Granular Sludge Process Treating Low-strength Wastewater, Chemical Engineering Journal, Vol. 164, pp. 208-213DOI
8 
De Zeeuw W.J, 1988, Granular sludge in UASB reactors, Pudoc, pp. 132-145
9 
Djamila A.H, Jacqueline T, Sven L, Thomas W, Thomas M, Daniela T, Andreas J, Wolfgang D, Juliane H, 2008, Correlation of EPS Content in Activated Sludge at Different Sludge Retention Times with Membrane Fouling Phenomena, Water Research, Vol. 42, pp. 1475-1488DOI
10 
Dulekgurgen E, Artan N, Orhon D, Wilderer P.A, 2008, How does Shear Affect Aggregation in Granular Sludge Sequencing Batch Reactors? Relations between Shear, Hydrophobicity, and Extracelluar Polymeric Substances, Water Science and Technology, Vol. 58, No. 2, pp. 267-276DOI
11 
Frϕlund B, Palmgren R, Keiding K, Nielsen P.H, 1996, Extraction of Extracelluar Polymers from Activated Sludge using a Cation Exchange Resin, Water Research, Vol. 30, pp. 1749-1758DOI
12 
Gao D, Liu L, Liang H, Wu W.M, 2011, Comparison of Four Enhancement Strategies for Aerobic Granulation in Sequencing Batch Reactors, Journal of Hazardous Materials, Vol. 186, pp. 320-327DOI
13 
Hood C.R, Randall A.A, 2001, A Biochemical Hypothesis Explaining the Response of Enhanced Biological Phosphorus Removal Biomass to Organic Substrates, Water Research, Vol. 35, No. 11, pp. 2758-2766DOI
14 
Hulshoff Pol L.W, De Zeeuw W.J, Velzeboer C.T.M, Lettinga G, 1983, Granulation in UASB Reactors, Water Science and Technology, Vol. 15, No. 8-9, pp. 291-304Google Search
15 
Jang H.L, 2002, Characterization of Aerobic Granular Sludge in SBR with High Loading Condition, [Korean Literature], Master’s Thesis, Korea University, pp. 31-35Google Search
16 
Jorand F, Boue-Bigne F, Block J.C, Urvain V, 1998, Hydrophobic/hydrophilic Properties of Activated Sludge Exopolymeric Substances, Water Science and Technology, Vol. 37, No. 4-5, pp. 307-315DOI
17 
Kim S.H, Choi H.C, Kim I.S, 2004, Enhanced Aerobic Floc-like Granulation and Nitrogen Removal in a Sequencing Batch Reactor by Selection of Settling Velocity, Water Science and Technology, Vol. 50, pp. 157-162Google Search
18 
Letitinga G, van Velsen A.F.M, Hosma S.W, de Zeeuw W, Klapwijk A, 1980, Use of the Upflow Sludge Blanket (USB) Reactor Concept for Biological Wastewater Treatment, Especially for Anaerobic Treatment, Biotechnology and Bioengineering, Vol. 22, No. 4, pp. 699-734DOI
19 
Li A, Li X, Yu H, 2011, Effect of the Food to Microorganism (F/M) Ratio on the Formation and Size of Aerobic Sludge Granules, Process Biochemistry, Vol. 46, No. 12, pp. 2269-2276DOI
20 
Li X.M, Liu Q.Q, Yang Q, Guo L, Zeng G.M, Hu J.M, Zheng W, 2009, Enhanced Aerobic Sludge Granulation in Sequencing Batch Reactor by Mg2+ Augmentation, Bioresource Technology, Vol. 100, pp. 64-67DOI
21 
Li Y, Liu Y, Xu H, 2008, Is Sludge Retention Time a Decisive Factor for Aerobic Granulation in SBR?, Bioresource Technology, Vol. 99, pp. 7672-7677DOI
22 
Liu H, Fang H.H.P, 2002, Extraction of Extracellular Polymeric Substances (EPS) of Sludges, Journal of Biotechnology, Vol. 95, pp. 249-256DOI
23 
Liu Y.Q, Liu Y, Tay J.H, 2004, The Effects of Extracellular Polymeric Substances on the Formation and Stability of Biogranules, Applied Microbiology and Biotechnology, Vol. 65, pp. 143-148DOI
24 
Liu T, Tay J.H, 2004, State of the Art of Biogranulation Technology for Wastewater Treatment, Biotechnology Advances, Vol. 22, No. 7, pp. 533-563DOI
25 
McKinney R.E, 1956, Biological Flocculation, Biological Treatment of Sewage and Industrial Wastes, Reinhold, pp. 88-117
26 
McSwain B.S, Irvine R.L, Wilderer P.A, 2004, The Influence of Settling Time on the Formation of Aerobic Granules, Water Science and Technology, Vol. 50, No. 10, pp. 195-202Google Search
27 
McSwain B.S, Irvine R.L, Hausner M, Wilderer P.A, 2005, Composition and Distribution of Extracellular Polymeric Substances in Aerobic Flocs and Granular Sludge, Applied and Environmental Microbiology, Vol. 71, pp. 1051-1057DOI
28 
Mino T, Satoh H, Matsuo T, 1994, Metabolisms of Different Bacterial Populations in Enhanced Biological Phosphate Removal Processes, Water Science and Technology, Vol. 29, No. 7, pp. 67-100Google Search
29 
Mishima K, Nakamura M, 1991, Self Immobilization of Aerobic Activated Sludge - a Pilot Study of the Aerobic Upflow Sludge Blanket Process in Municipal Sewage Treatment, Water Science and Technology, Vol. 23, pp. 981-990Google Search
30 
Morgenroth E, Sherden T, van Loosdrecht M.C.M, Heignen J.J, Wilderer P.A, 1997, Aerobic Granulation in a Sequencing Batch Reactor, Water Research, Vol. 31, pp. 3191-3194DOI
31 
Ni B.J, Zeng R.J, Fang F, Xie W.M, Sheng G.P, Yu H.Q, 2010, Fractionating Soluble Microbial Products in the Activated Sludge Process, Water Research, Vol. 44, pp. 2292-2302DOI
32 
Pevere A, Guibaud G, van Hullebusch E.D, Boughzala W, Lens P.N.L, 2007, Effect of Na+ and Ca2+ on the Aggregation Properties of Sieved Anaerobic Granular Sludge, Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 306, pp. 142-149DOI
33 
Qin L, Liu Y, Tay J.H, 2004, Effect of Settling Time on Aerobic Granulation in Sequencing Batch Reactor, Biochemical Engineering Journal, Vol. 21, pp. 47-52DOI
34 
Sheng G.P, Yu H.Q, Yu Z, 2005, Extraction of the Extracellular Polymeric Substances from a Photosynthetic Bacterium Rhodopseudomonas Acidophila, Applied Microbiology and Biotechnology, Vol. 67, pp. 125-130DOI
35 
Sheng G.P, Yu H.Q, Li X.Y, 2010, Extracellular Polymeric Substances (EPS) of Microbial Aggregates in Biological Wastewater Treatment Systems: A review, Biotechnology Advances, Vol. 28, pp. 882-894DOI
36 
Sun X.F, Wang S.G, Xiao X.M, Chen J.P, Li X.M, Gao B.Y, Ma Y, 2009, Spectroscopic Study of Zn2+ and Co2+ Binding to Extracellular Polymeric Substances (EPS) from Aerobic Granules, Journal of colloid and Interface Sciences, Vol. 335, pp. 11-17DOI
37 
Tay J.H, Yan Y.G, 1996, Influence of Substrate Concentration on Microbial Selection and Granulation During Start-up of Upflow Anaerobic Sludge Blanket Reactors, Water research, Vol. 36, pp. 702-712Google Search
38 
Tay J.H, Liu Q.S, Liu Y, 2001, The Effects of Shear Force on the Formation, Structure and Metabolism of Aerobic Granules, Applied and Environmental Microbiology, Vol. 57, pp. 227-233DOI
39 
Wang Z.W, Liu Y, Tay J.H, 2006, The Role of SBR Mixed Liquor Volume Exchange Ratio in Aerobic Granulation, Chemosphere, Vol. 62, pp. 767-771DOI
40 
Wang Z, Liu Y, Tay J.H, 2007, Biodegradability of Extracellular Polymeric Substances Produced by Aerobic Granules, Applied Microbiology and Biotechnology, Vol. 74, pp. 462-466DOI
41 
Weng C.N, Molof A.H, 1974, Nitrification in the Biological Fixed Film Rotating Disk System, Journal of the Water Pollution Control Federation, Vol. 46, pp. 1674-1685Google Search
42 
Wu C.Y, Peng Y.Z, Wang S.Y, Ma Y, 2010, Enhanced Biological Phosphorus Removal by Granular Sludge: From Macro - to Micro-scale, Water Research, Vol. 44, pp. 807-814DOI
43 
Yun Z, Choi E, Park Y, Lee H, Jeong H, Kim K, Lee H, Rho K, Gil K, 2000, Extracellular Polymeric Substances in Relations to Nutrient Removal from SBBR
44 
Zhang B, Ji M, Qiu Z, Liu H, Wang J, Li J, 2011, Microbial Population Dynamics During Sludge Granulation in an Anaerobic-aerobic Biological Phosphorus Removal System, Bioresource Technology, Vol. 102, pp. 2474-2480DOI
45 
Zheng Y.M, Yu H.Q, Liu S.J, Liu X.Z, 2006, Formation and Instability of Aerobic Granules Under High Organic Loading Conditions, Chemosphere, Vol. 63, No. 10, pp. 1791-1800DOI
46 
Zheng Y.M, Yu H.Q, 2007, Determination of the Pore Size Distribution and Porosity of Aerobic Granules Using Size Exclusion Chromatography, Water research, Vol. 41, pp. 39-46DOI
47 
Zhou W, Imai T, Ukita M, Sekine M, Higuchi T, 2006, Triggering Forces for Anaerobic Granulation in UASB Reactors, Process Biochemistry, Vol. 41, pp. 36-43DOI
48 
Zhu L, Lv M, Dai X, Yu Y, Qi H, Xu X, 2012, Role and Significance of Extracellular Polymeric Substances on the Property of Aerobic Granule, Bioresource Technology, Vol. 107, pp. 46-54DOI