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 H.C., Jang E.S., Eo M.C., Kim H., Choi C.S., Ji Y.E., 2008, [Korean Literature], A Study of FT-IR Characteristic Change of the Solid Product with Hot Water Pressurized Reaction Temperature of Sewage Sludge, Korea Society of Waste Management, pp. 244-247
2 
American Public Health Association (APHA), 2005, Standard Methods for the Examination of Water and Wastewater, American Public Health Association
3 
Bonmati A., Flotats X., Mateu L., Campos E., 2001, Study of Thermal Hydrolysis as a Pretreatment to Mesophilic Anaerobic Digestion of Pig Slurry, Water Science and Technology, Vol. 44, No. 4, pp. 109-116Google Search
4 
Cho H.S., Kim J.Y., Chun S.K., Bae Y.S., 2007, A Study on Characteristics of Landfill Gas Production from Each Refuse Components, [Korean Literature], Korea Society of Waste Management, Vol. 24, No. 3, pp. 226-233Google Search
5 
Cho J.K., Park S.C., Chang H.N., 1995, Biochemical Methane Potential and Solid State Anaerobic Digestion of Korean Food Wastes, Bioresource Technology, Vol. 52, No. 3, pp. 245-253Google Search
6 
Chynoweth D.P., Turick C.E., Owens J.M., Jerger D.E., Peck M.W., 1993, Biochemical Methane Potential of Biomass and Waste Feedstocks, Biomass and Bioenergy, Vol. 5, No. 1, pp. 95-111Google Search
7 
Elbeshbishy E., Hafez H., Dhar B.R., Nakhla G., 2011, Single and Combined Effect of Various Pretreatment Methods for Biohydrogen Production from Food Waste, International Journal of Hydrogen Energy, Vol. 36, No. 17, pp. 11379-11387Google Search
8 
Ercin D., Yurum Y., 2003, Carbonisation of Fir (Abies bornmulleriana) Wood in an Open Pyrolysis System at 50-300°C, Journal of Analytical and Applied Pyrolysis, Vol. 67, No. 1, pp. 11-22Google Search
9 
Ezeonu F.C., Okaka A.N.C., 1996, Process Kinetics and Digestion Efficiency of Anaerobic Batch Fermentation of Brewer’s Spent Grains (BSG), Process Biochemistry, Vol. 31, No. 1, pp. 7-12Google Search
10 
Gossett J.M., Belser R.L., 1982, Anaerobic Digestion of Waste Activated Sludge, Journal of the Environmental Engineering Division, Vol. 108, No. EE6, pp. 1101-1120Google Search
11 
Han S.K., Song H.W., Choi C.S., Kim H., Lee S.E., 2012, Physicochemical Properties of Sewage Sludge according to Thermal Hydrolysis Reaction Temperature, [Korean Literature], Korea Society of Waste Management, Vol. 29, No. 4, pp. 414-420Google Search
12 
Haug R.T., Stuckey D.C., Gossett J.M., McCarty P.L., 1978, Effect of Thermal Pretreatment on Digestibility and Dewaterability of Organic Sludges, Journal of Water Pollution Control Federation, Vol. 50, No. 1, pp. 73-85Google Search
13 
Heo N.H., Park S.C., Kang H., 2004, Effects of Mixture Ratio and Hydraulic Retention Time on Single-Stage Anaerobic Co-digestion of Food Waste and Waste Activated Sludge, Journal of Environmental Science and Health, Vol. 39, No. 7, pp. 1739-1756Google Search
14 
Husain A., 1998, Mathematical Models of the Kinetics of Anaerobic Digestion-a Selected Review, Biomass and Bioenergy, Vol. 14, No. 5-6, pp. 561-571Google Search
15 
Kang H., Weiland P., 1993, Ultimate Anaerobic Biodegradability of some Agro-industrial Residues, Bioresource Technology, Vol. 43, No. 2, pp. 107-111Google Search
16 
Lee J.P., Park S.C., Rhee S.W., 1997, The Effect of Ammonia and Sodium Chloride on the Anaerobic Digestion of Food Waste, [Korean Literature], Journal of Korean Society of Environmental Engineers, Vol. 19, No. 9, pp. 1185-1192Google Search
17 
Linke B., 1997, A Model for Anaerobic Digestion of Animal Waste Slurries, Environmental Technology, Vol. 18, No. 8, pp. 849-854Google Search
18 
Ministry of Environment (MOE), 2011, [Korean Literature], Standard Methods for Water Quality, Ministry of Environment
19 
Ministry of Environment (MOE), 2013, [Korean Literature], Je4cha jeonkuk pyekimul tongkyejosa [The Fourth National Waste Survey], Ministry of Environment
20 
Owens J.M., Chynoweth D.P., 1993, Biochemical Methane Potential of Municipal Solid Waste (MSW) Components, Water Science and Technology, Vol. 27, No. 2, pp. 1-14Google Search
21 
Pickworth B., Adams J., Panter K., Solheim O.E., 2006, Maximising Biogas in Anaerobic Digestion by Using Engine Waste Heat for Thermal Hydrolysis Pre-treatment of Sludge, Water Science and Technology, Vol. 54, No. 5, pp. 101-108Google Search
22 
Rao M.S., Singh S.P., Singh A.K., Sodha M.S., 2000, Bioenergy Conversion Studies of the Organic Fraction of MSW: Assessment of Ultimate Bioenergy Production Potential of Municipal Garbage, Applied Energy, Vol. 66, No. 1, pp. 75-87Google Search
23 
Ruiz-Espinoza J.E., Mendez-Contreras J.M., Alvarado-Lassman A., Martinez-Delgadillo S.A., 2012, Effect of Low Temperature Thermal Pre-treatment on the Solubilization of Organic Matter, Pathogen Inactivation and Mesophilic Anaerobic Digestion of Poultry Sludge, Journal of Environmental Science and Health, Vol. 47, No. 12, pp. 1795-1802Google Search
24 
Salminen E., Rintala J., Harkonen J., Kuitunen M., Hogmander H., Oikari A., 2001, Anaerobically Digested Poultry Slaughterhouse Wastes as Fertiliser in Agriculture, Bioresource Technology, Vol. 78, No. 1, pp. 81-88Google Search
25 
Salsabil M.R., Laurent J., Casellas M., Dagot C., 2010, Techno-Economic Evaluation of Thermal Treatment, Ozonation and Sonication for the Reduction of Wastewater Biomass Volume before Aerobic or Anaerobic Digestion, Journal of Hazardous Materials, Vol. 174, No. 1-3, pp. 323-333Google Search
26 
Sarada R., Joseph R., 1994, Studies on Factors Influencing Methane Production from Tomato-processing Waste, Bioresource Technology, Vol. 47, No. 1, pp. 55-57Google Search
27 
Shelton D.R., Tiedje J.M., 1984, General Method for Determining Anaerobic Biodegradation Potential, Applied and Environmental Microbiology, Vol. 47, No. 4, pp. 850-857Google Search
28 
Shin H.S., Song Y.C., Paik B.C., 1994, Effect of Sodium Ion on the Anaerobic Degradation of Food Waste: Quantitative Evaluation, Inhibition Model, [Korean Literature], Journal of Korean Organic Waste Recycling Engineering Community, Vol. 2, No. 2, pp. 3-17Google Search
29 
Shin M.C., Oh D.M., Lee Y.S., Gu B.W., 2007, [Korean Literature], A Study on the Generation and Treatment as Foodwaste Decanted Water, Korean society of Environmental Engineers and Korean Society for Atmospheric Environment and Korea Society of Waste Management, pp. 2189-2192
30 
Srilatha H.R., Nand K., Sudhakar B.K., Madhukara K., 1995, Fungal Pretreatment of Orange Processing Waste by Solid-State Fermentation for Improved Production of Methane, Process Biochemistry, Vol. 30, No. 4, pp. 327-331Google Search
31 
Tchobanoglous G., Burton F.L., 2002, Wastewater Engineering Treatment and Reuse, McGraw-Hill, pp. 1505-1532
32 
Tritt W.P., Kang H., 1991, Ultimate Biodegradability and Decay Rates of Cow Paunch Manure under Anaerobic Conditions, Bioresource Technology, Vol. 36, No. 2, pp. 161-165Google Search
33 
Veeken A., Hamelers B., 1999, Effect of Temperature on Hydrolysis Rates of Selected Biowaste Components, Bioresource Technology, Vol. 69, No. 3, pp. 249-254Google Search
34 
Zubr J., 1986, Methanogenic Fermentation of Fresh and Ensiled Plant Materials, Biomass, Vol. 11, No. 3, pp. 159-171Google Search