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 
Bard A. J., Faulkner L. R., 2001, Electrochemical Methods, Fundamentals and Application, Bard, A. J. and Faulkner, L. R. (2001). Electrochemical Methods, Fundamentals and Application, John Wiley & Sons, Inc., pp. 18-28., pp. 18-28Google Search
2 
Chang D., Choi H. S., Sunwoo Y., Hong K. H., 2014, Performance Response and Recovery of Temporal and Spatial Phase Separated Process for Nutrients Removal in Short-Term Shock Loadings, Journal of Industrial and Engineering Chemistry, Chang, D., Choi, H. S., Sunwoo, Y., and Hong, K. H. (2014). Performance Response and Recovery of Temporal and Spatial Phase Separated Process for Nutrients Removal in Short-Term Shock Loadings, Journal of Industrial and Engineering Chemistry, 20, pp. 3009-3013., Vol. 20, pp. 3009-3013DOI
3 
Choi C. G., Lee K. H., 2002, Characteristics of Domestic Wastewater Flow Rate and Water Quality in Cheongju City, Journal of Korea Environmental Technology, Choi, C. G. and Lee, K. H. (2002). Characteristics of Domestic Wastewater Flow Rate and Water Quality in Cheongju City, Journal of Korea Environmental Technology, 3(2), pp. 135-141. [Korean Literature], Vol. 3, No. 2, pp. 135-141Google Search
4 
Elmitwalli T. A., Dun M. V., Bruning H., Zeeman G., Lettinga G., 2000, The Role of Filter Media in Removing Suspended and Colloidal Particles in an Anaerobic Reactor Treating Domestic Sewage, Bioresource Technology, Elmitwalli, T. A., Dun, M. V., Bruning, H., Zeeman, G., and Lettinga, G. (2000). The Role of Filter Media in Removing Suspended and Colloidal Particles in an Anaerobic Reactor Treating Domestic Sewage, Bioresource Technology, 72, pp. 235-242., Vol. 72, pp. 235-242DOI
5 
Hamelers H. V. M., Heijne A. T., Sleutels T. H. J. A., Jeremiasse A. W., Strik D. P. B. T. B., Cees J. N., Buisman C. J. N., 2010, New Applications and Performance of Bioelectrochemical Systems, Appl Microbiol Biotechnol, Hamelers, H. V. M., Heijne, A. T., Sleutels, T. H. J. A., Jeremiasse, A. W., Strik, D. P. B. T. B., Cees J. N., and Buisman, C. J. N. (2010). New Applications and Performance of Bioelectrochemical Systems, Appl Microbiol Biotechnol, 85, p. 1673-1685., Vol. 85, pp. 1673-1685DOI
6 
Kim Y. C., Chang I. S., Lee D. R., 2003, Design Consideration of Reuse Treatment Facility for the Secondary Effluent from Municipal Wastewater Treatment Plant, Journal of Korean Society of Environmental Engineers, Kim, Y. C., Chang, I. S., and Lee, D. R. (2003). Design Consideration of Reuse Treatment Facility for the Secondary Effluent from Municipal Wastewater Treatment Plant, Journal of Korean Society of Environmental Engineers, 25(8), pp. 946-954. [Korean Literature], Vol. 25, No. 8, pp. 946-954Google Search
7 
Kovarova-Koar K., Egli T., 1998, Growth Kinetics of Suspended Microbial Cells: From Single-Substrate-Controlled Growth to Mixed-Substrate Kinetics, Microbiology and Molecular Biology Reviews, Kovarova-Koar, K. and Egli, T. (1998). Growth Kinetics of Suspended Microbial Cells: From Single-Substrate-Controlled Growth to Mixed-Substrate Kinetics, Microbiology and Molecular Biology Reviews, 62(3), pp. 646-666., Vol. 62, No. 3, pp. 646-666Google Search
8 
Krieg T., Sydow A., Schroder U., Schrader J., Holtmann D., 2014, Reactor Concepts for Bioelectrochemical Syntheses and Energy Conversion, Trends in Biotechnology, Krieg, T., Sydow, A., Schroder, U., Schrader J., and Holtmann, D. (2014). Reactor Concepts for Bioelectrochemical Syntheses and Energy Conversion, Trends in Biotechnology, 32(12), pp. 645-655., Vol. 32, No. 12, pp. 645-655DOI
9 
Liu Y., 2006, A Simple Thermodynamic Approach for Derivation of a General Monod Equation for Microbial Growth, Biochemical Engineering Journal, Liu, Y. (2006). A Simple Thermodynamic Approach for Derivation of a General Monod Equation for Microbial Growth, Biochemical Engineering Journal, 31, pp. 102-105., Vol. 31, pp. 102-105DOI
10 
Reis C. M., Silva E. L., 2011, Effect of Upflow Velocity and Hydraulic Retention Time in Anaerobic Fluidized-Bed Reactors Used for Hydrogen Production, Chemical Engineering Journal, Reis, C. M. and Silva, E. L. (2011). Effect of Upflow Velocity and Hydraulic Retention Time in Anaerobic Fluidized-Bed Reactors Used for Hydrogen Production, Chemical Engineering Journal, 172, pp. 28-36., Vol. 172, pp. 28-36DOI
11 
Rozendal R. A., Hamelers H. V. M., Rabaey K., Keller J., Buisman C. J. N., 2008, Towards Practical Implementation of Bioelectrochemical Wastewater Treatment, Trends in Biotechnology, Rozendal, R. A., Hamelers, H. V. M., Rabaey, K., Keller, J., and Buisman, C. J. N. (2008). Towards Practical Implementation of Bioelectrochemical Wastewater Treatment, Trends in Biotechnology, 26(8), pp. 450-459., Vol. 26, No. 8, pp. 450-459DOI
12 
Snoeyink V. L., Jenkins D., 1980, Water Chemistry, Snoeyink, V. L. and Jenkins, D. (1980). Water Chemistry, John Wiley & Sons, Inc., pp. 328-329., pp. 328-329Google Search
13 
Song Y. C., Lim H. J., Woo J. H., 2015, Influence of Applied Voltage and COD on the Bioelectrochemical Degradation of Organic Matter, Desalination and Water Treatment, Song, Y. C., Lim, H. J., and Woo, J. H. (2015). Influence of Applied Voltage and COD on the Bioelectrochemical Degradation of Organic Matter, Desalination and Water Treatment, 53, pp. 2732-2739., Vol. 53, pp. 2732-2739DOI
14 
Tchobanoglous G., Stensel H. D., Tsuchihashi R., Burton F., Abu-Orf M., Bowden G., Pfrang W., 2014, Waterwater Engineering: Treatment and Resource Recovery, Tchobanoglous, G., Stensel, H. D., Tsuchihashi, R., Burton, F., Abu-Orf, M., Bowden, G., and Pfrang, W. (2014). Waterwater Engineering: Treatment and Resource Recovery, 5th edition, Metcalf and Eddy Inc., McGraw-Hill, New York pp. 551-696., pp. 551-696Google Search