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 
Åmand L., Olsson G., Carlsson B., 2013, Aeration Control-a Review, Water Science and Technology, Vol. 67, No. 11, pp. 2374-2398DOI
2 
Bandara W.M., Satoh H., Sasakawa M., Nakahara Y., Takahashi M., Okabe S., 2011, Removal of Residual Dissolved Methane Gas in an Upflow Anaerobic Sludge Blanket Reactor Treating Low-Strength Wastewater at Low Temperature with Degassing Membrane, Water Research, Vol. 45, No. 11, pp. 3533-3540DOI
3 
Böhnke B., 1977, Das Adsorptions-Belebungsverfahren, [German Literature], Korrespondenz Abwasser, Vol. 24, pp. 121-127Google Search
4 
Bourke M.R., 2000, Full Scale Study of Chemically Enhanced Primary Treatment in Riviera de São Lourenço, Brazil, Ph. D. Dissertation, Massachusetts Institute of Technology, pp. 79-80
5 
Chen Y., Cheng J.J., Creamer K.S., 2008, Inhibition of Anaerobic Digestion Process: A Review, Bioresource Technology, Vol. 99, No. 10, pp. 4044-4064DOI
6 
Chu L.B., Yang F.L., Zhang X.W., 2005, Anaerobic Treatment of Domestic Wastewater in a Membrane-Coupled Expended Granular Sludge Bed (EGSB) Reactor under Moderate to Low Temperature, Process Biochemistry, Vol. 40, No. 3, pp. 1063-1070DOI
7 
De Clippeleir H., Weissenbacher N., Schaubroeck T., Hell M., Boeckx P., Boon N., Wett B., 2012, Mainstream Partial Nitritation/Anammox: Balancing Overall Sustainability with Energy Savings, Water Environment Federation, Vol. 2012, No. 10, pp. 5761-5770
8 
Energy Daily News, 2017, http://www.energydaily.co.kr/news/articleView.html?idxno=70001 (accessed Nov, 2017). [Korean Literature], Achievement of 50 % Energy Independence in Seoul Water Reclamation Plants
9 
Gujer W., Henze M., Mino T., Van Loosdrecht M., 1999, Activated Sludge Model no. 3, Water Science and Technology, Vol. 39, No. 1, pp. 183-193DOI
10 
Haydar S., Aziz J.A., 2009, Characterization and Treatability Studies of Tannery Wastewater using Chemically Enhanced Primary Treatment (CEPT)-a Case Study of Saddiq Leather Works, Journal of Hazardous Materials, Vol. 163, No. 2, pp. 1076-1083DOI
11 
Heidrich E.S., Curtis T.P., Dolfing J., 2010, Determination of the Internal Chemical Energy of Wastewater, Environmental Science and Technology, Vol. 45, No. 2, pp. 827-832DOI
12 
Heo N.H., Lee S.H., Kim B.K., 2008, Biogas Production and Utilization Technologies from Organic Waste, [Korean Literature], Journal of the Korean Society for New and Renewable Energy, Vol. 4, No. 2, pp. 21-30Google Search
13 
Hu A.Y., Stuckey D.C., 2007, Activated Carbon Addition to a Submerged Anaerobic Membrane Bioreactor: Effect on Performance, Transmembrane Pressure, and Flux, Journal of Environmental Engineering, Vol. 133, No. 1, pp. 73-80DOI
14 
Jeong Y., Cho K., Kwon E.E., Tsang Y.F., Rinklebe J., Park C., 2017, Evaluating the Feasibility of Pyrophyllite-Based Ceramic Membranes for Treating Domestic Wastewater in Anaerobic Ceramic Membrane Bioreactors, Chemical Engineering Journal, Vol. 328, pp. 567-573DOI
15 
Jimenez J., Miller M., Bott C., Murthy S., De Clippeleir H., Wett B., 2015, High-Rate Activated Sludge System for Carbon Management-Evaluation of Crucial Process Mechanisms and Design Parameters, Water Research, Vol. 87, pp. 476-482DOI
16 
Ju F., Lau F., Zhang T., 2017, Linking Microbial Community, Environmental Variables, and Methanogenesis in Anaerobic Biogas Digesters of Chemically Enhanced Primary Treatment Sludge, Environmental Science & Technology, Vol. 51, No. 7, pp. 3982-3992DOI
17 
Kang H., Jeong J.H., 2008, [Korean Literature], Determination of Ultimate Biodegradability and Multiple Decay Rate in Anaerobic Degradation of Sewage Sludge, Korea Society of Waste Management, pp. 299-302
18 
Kinyua M.N., Miller M.W., Wett B., Murthy S., Chandran K., Bott C.B., 2017, Polyhydroxyalkanoates, Triacylglycerides and Glycogen in a High Rate Activated Sludge A-Stage System, Chemical Engineering Journal, Vol. 316, pp. 350-360DOI
19 
Kooijman G., De Kreuk M.K., van Lier J.B., 2017, Influence of Chemically Enhanced Primary Treatment on Anaerobic Digestion and Dewaterability of Waste Sludge, Water Science and Technology, Vol. 76, No. 7-8, pp. 1629-1639DOI
20 
Lazarova V., Choo K.H., Cornel P., 2012, Meeting the Challenges of the Water-Energy Nexus: the Role of Reuse and Wastewater Treatment, Water, Vol. 21, pp. 12-17Google Search
21 
Li N., He L., Lu Y.Z., Zeng R.J., Sheng G.P., 2017, Robust Performance of a Novel Anaerobic Biofilm Membrane Bioreactor with Mesh Filter and Carbon Fiber (ABMBR) for Low to High Strength Wastewater Treatment, Chemical Engineering Journal, Vol. 313, pp. 56-64DOI
22 
Lin L., Li R.H., Li Y., Xu J., Li X.Y., 2017, Recovery of Organic Carbon and Phosphorus from Wastewater by Fe-Enhanced Primary Sedimentation and Sludge Fermentation, Process Biochemistry, Vol. 54, pp. 135-139DOI
23 
Loosdrecht M.C.V., Kuba T., Veldhuizen H.M.V., Brandse F.A., Heijnen J.J., 1997, Environmental Impacts of Nutrient Removal Processes: Case Study, Journal of Environmental Engineering, Vol. 123, No. 1, pp. 33-40DOI
24 
Mamais D., Jenkins D., Prrr P., 1993, A Rapid Physical-Chemical Method for the Determination of Readily Biodegradable Soluble COD in Municipal Wastewater, Water Research, Vol. 27, No. 1, pp. 195-197DOI
25 
McCarty P.L., Bae J., Kim J., 2011, Domestic Wastewater Treatment as a Net Energy Producer-Can This Be Achieved?, Environmental Science and Technology, Vol. 45, No. 17, pp. 7100-7106DOI
26 
Meerburg F.A., Boon N., Van Winckel T., Vercamer J.A., Nopens I., Vlaeminck S.E., 2015, Toward Energy-Neutral Wastewater Treatment: a High-Rate Contact Stabilization Process to Maximally Recover Sewage Organics, Bioresource Technology, Vol. 179, pp. 373-381DOI
27 
Meerburg F.A., Boon N., Van Winckel T., Pauwels K.T., Vlaeminck S.E., 2016, Live Fast, Die Young: Optimizing Retention Times in High-Rate Contact Stabilization for Maximal Recovery of Organics from Wastewater, Environmental Science & Technology, Vol. 50, No. 17, pp. 9781-9790DOI
28 
Ministry of Environment (ME), 2010, [Korean Literature], Basic Plan for Energy Independence, Ministry of Environment
29 
Ministry of Environment (ME), 2011, [Korean Literature], Report on Environmental Technology: Future Technological Options for Advanced Sewage Treatment, Ministry of Environment, pp. 1-9
30 
Ministry of Environment (ME), 2015, [Korean Literature], National Plan for Sewage Management, Ministry of Environment, pp. 12-13
31 
Ministry of Environment (ME), 2016, [Korean Literature], The Facility Status for Energy Conversion of Organic Wastes in 2015, Ministry of Environment, pp. 6-7
32 
Ministry of Trade, Industry and Energy (MOTIE), 2015, [Korean Literature], The 7th Basic Plan for Energy Supply, Ministry of Trade, Industry and Energy, pp. 1-2
33 
Mouri G., Takizawa S., Fukushi K., Oki T., 2013, Estimation of the Effects of Chemically-Enhanced Treatment of Urban Sewage System Based on Life-Cycle Management, Sustainable Cities and Society, Vol. 9, pp. 23-31DOI
34 
National Research Council, 1993, Managing Wastewater in Coastal Urban Areas, National Academies Press
35 
Nowak O., Enderle P., Varbanov P., 2015, Ways to Optimize the Energy Balance of Municipal Wastewater Systems: Lessons Learned from Austrian Applications, Journal of Cleaner Production, Vol. 88, pp. 125-131DOI
36 
Obulisamy P.K., Chakraborty D., Selvam A., Wong J.W., 2016, Anaerobic Co-Digestion of Food Waste and Chemically Enhanced Primary-Treated Sludge Under Mesophilic and Thermophilic Conditions, Environmental Technology, Vol. 37, No. 24, pp. 3200-3207DOI
37 
Olsson G., 2015, Water and Energy: Threats and Opportunities, IWA publishing, pp. 349-350
38 
Park J.B., Hur H.W., Kang H., Chang S.O., 2009, Assessment of the Organic and Nitrogen Fractions in the Sewage of the Different Sewer Network Types by Respirometric Method, [Korean Literature], Journal of Korean Society of Environmental Engineers, Vol. 31, No. 8, pp. 649-654Google Search
39 
Poon C.S., Chu C.W., 1999, The Use of Ferric Chloride and Anionic Polymer in the Chemically Assisted Primary Sedimentation Process, Chemosphere, Vol. 39, No. 10, pp. 1573-1582DOI
40 
Rahman A., Meerburg F.A., Ravadagundhi S., Wett B., Jimenez J., Bott C., Al-Omari A., Riffat R., Murthy S., De Clippeleir H., 2016, Bioflocculation Management Through High-Rate Contact-Stabilization: A Promising Technology to Recover Organic Carbon from Low-Strength Wastewater, Water Research, Vol. 104, pp. 485-496DOI
41 
Rahman A., Mosquera M., Thomas W., Jimenez J.A., Bott C., Wett B., Al-Omari A., Murthy S., Riffat R., De Clippeleir H., 2017, Impact of Aerobic Famine and Feast Condition on Extracellular Polymeric Substance Production in High-Rate Contact Stabilization Systems, Chemical Engineering Journal, Vol. 328, pp. 74-86DOI
42 
Sarparastzadeh H., Saeedi M., Naeimpoor F., Aminzadeh B., 2007, Pretreatment of Municipal Wastewater by Enhanced Chemical Coagulation, International Journal of Environmental Research, Vol. 1, No. 2, pp. 104-113Google Search
43 
Shin H.S., Jeong H.S., Nam S.Y., 2001, Measurement of the Organic and Biomass Fractions in Sewage by Respirometry, [Korean Literature], Journal of Korean Society of Biotechnology and Bioengineering, Vol. 16, No. 4, pp. 351-355Google Search
44 
Shoener B.D., Bradley I.M., Cusick R.D., Guest J.S., 2014, Energy Positive Domestic Wastewater Treatment: the Roles of Anaerobic and Phototrophic Technologies, Environmental Science: Processes and Impacts, Vol. 16, No. 6, pp. 1204-1222DOI
45 
Smith A.L., Love N.G., Skerlos S.J., Raskin L., 2011, Role of Membrane Biofilm in Psychrophilic Anaerobic Membrane Bioreactor for Domestic Wastewater Treatment, Vol. 11, No. 11, pp. 4948-4952
46 
Sötemann S.W., Wentzel M.C., Ekama G.A., 2006, Mass Balance-Based Plant-Wide Wastewater Treatment Plant Models-Part 4: Aerobic Digestion of Primary and Waste Activated Sludges, Water SA, Vol. 32, No. 3, pp. 297-306DOI
47 
Szatkowska A. B., Paulsrud B., 2014, The Anammox Process for Nitrogen Removal from Wastewater-Achievements and Future Challenges, Vannforeningen, Vol. 2014, No. 2, pp. 186-194Google Search
48 
Wan J., Gu J., Zhao Q., Liu Y., 2016, COD Capture: a Feasible Option Towards Energy Self-Sufficient Domestic Wastewater Treatment, Scientific Reports, Vol. 6, pp. 25054DOI
49 
Wang H., Li F., Keller A.A., Xu R., 2009, Chemically Enhanced Primary Treatment (CEPT) for Removal of Carbon and Nutrients from Municipal Wastewater Treatment Plants: a Case Study of Shanghai, Water Science and Technology, Vol. 60, No. 7, pp. 1803-1809DOI
50 
Wang X., Wang C., Tang C.Y., Hu T., Li X., Ren Y., 2017, Development of a Novel Anaerobic Membrane Bioreactor Simultaneously Integrating Microfiltration and Forward Osmosis Membranes for Low-Strength Wastewater Treatment, Journal of Membrane Science, Vol. 527, pp. 1-7DOI
51 
Yoon S.H., 2014, Renewable Energy Technology for the Energy Independence of Public Sewage Treatment Plants, [Korean Literature], Konetic Report, Vol. 2014-7, pp. 1-19Google Search
52 
Zhang G., Ji S., Gao X., Liu Z., 2008, Adsorptive Fouling of Extracellular Polymeric Substances with Polymeric Ultrafiltration Membranes, Journal of Membrane Science, Vol. 309, No. 1, pp. 28-35DOI
53 
Zhang X., Wang Z., Wu Z., Lu F., Tong J., Zang L., 2010, Formation of Dynamic Membrane in an Anaerobic Membrane Bioreactor for Municipal Wastewater Treatment, Chemical Engineering Journal, Vol. 165, No. 1, pp. 175-183DOI
54 
Zhang Z.B., Zhao J.F., Xia S.Q., Liu C.Q., Kang X.S., 2007, Particle Size Distribution and Removal by a Chemical-Biological Flocculation Process, Journal of Environmental Sciences, Vol. 19, No. 5, pp. 559-563DOI