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 
2012, Standard Method for the Examination of Water & Wastewater, American Public Health Association (APHA). (2012). Standard Method for the Examination of Water & Wastewater, 22nd Edition, American Public Health Association, Washington D.C., USA.Google Search
2 
Choi S. H., 2003, Official Test Methods of Water Quality, Choi, S. H. (2003). Official Test Methods of Water Quality, Shinkwang Publisher. [Korean Literature]Google Search
3 
Choi W. J., Park K. M., Yoon B. G., Kim M. C., Oh K. J., 2009, Recovery of Presource from Sewage Sludge by a Struvite-Forming Method, Journal of Korean Society of Environmental Engineers, Choi, W. J., Park, K., M., Yoon, B. G., Kim, M. C., and Oh, K. J. (2009). Recovery of Presource from Sewage Sludge by a Struvite-Forming Method, Journal of Korean Society of Environmental Engineers, 31(7), pp. 557-564. [Korean Literature], Vol. 31, No. 7, pp. 557-564Google Search
4 
Ichihashi O., Hirooka K., 2012, Removal and Recovery of Phosphorus as Struvite from Swine Wastewater Using Microbial Fuel Cell, Bioresource Technology, Ichihashi, O. and Hirooka, K. (2012). Removal and Recovery of Phosphorus as Struvite from Swine Wastewater Using Microbial Fuel Cell, Bioresource Technology, 114, pp. 303-307., Vol. 114, pp. 303-307DOI
5 
Jaffer Y., Clark T. A., Pearce S. A., 2002, Potential Phosphorus Recovery by Struvite Formation, Water Research, Jaffer, Y., Clark, T. A., and Pearce, S. A. (2002). Potential Phosphorus Recovery by Struvite Formation, Water Research, 36(7), pp. 1834-1842., Vol. 36, No. 7, pp. 1834-1842DOI
6 
Kim J. O., Jung J. T., Kim H. K., 2006, Removal of Nitrogen and Phosphorus in Anaerobic Fermentation Supernatant by Struvite Crystallization, Journal of the Korean Geo-Environmental Society, Kim, J. O., Jung, J. T., and Kim, H. K. (2006). Removal of Nitrogen and Phosphorus in Anaerobic Fermentation Supernatant by Struvite Crystallization, Journal of the Korean Geo-Environmental Society, 7(6), pp. 5-12. [Korean Literature], Vol. 7, No. 6, pp. 5-12Google Search
7 
Kim J. Y., Moon Y. T., Seo I. S., Kim B. G., 2007, Estimation of the Optimum Factor of the Struvite Crystallization for Nitrogen and Phosphorus Removal in WWTP, Journal of the Korean Society of Water and Wastewater, Kim, J. Y., Moon, Y. T., Seo, I. S., and Kim, B. G. (2007). Estimation of the Optimum Factor of the Struvite Crystallization for Nitrogen and Phosphorus Removal in WWTP, Journal of the Korean Society of Water and Wastewater, 21(6), pp. 745-753. [Korean Literature], Vol. 21, No. 6, pp. 745-753Google Search
8 
Lahav O., Telzhensky M., Zewuhn A., Gendel Y., Gerth J., Calmano W., Birnhack L., 2013, Struvite Recovery from Municipal-Wastewater Sludge Centrifuge Supernatant Using Seawater NF Concentrate as a Cheap Mg(II) Source, Separation and Purification Technology, Lahav, O., Telzhensky, M., Zewuhn, A., Gendel, Y., Gerth, J., Calmano, W., and Birnhack, L. (2013). Struvite Recovery from Municipal-Wastewater Sludge Centrifuge Supernatant Using Seawater NF Concentrate as a Cheap Mg(II) Source, Separation and Purification Technology, 108, pp. 103-110., Vol. 108, pp. 103-110DOI
9 
Lee H., Yun Z., 2013, Possibility of Anoxic Phosphorus Removal by Denitrifier in Denitrifying EBPR System, Journal of Korean Society on Water Environment, Lee, H. and Yun, Z. (2013). Possibility of Anoxic Phosphorus Removal by Denitrifier in Denitrifying EBPR System, Journal of Korean Society on Water Environment, 29(6), pp. 782-789. [Korean Literature], Vol. 29, No. 6, pp. 782-789Google Search
10 
Liu B., Giannis A., Zhang J., Chang V. W. C., Wang J. Y., 2013, Characterization of Induced Struvite Formation from Source-Separated Urine Using Seawater and Brine as Magnesium Sources, Chemosphere, Liu, B., Giannis, A., Zhang, J., Chang, V. W. C., and Wang, J. Y. (2013). Characterization of Induced Struvite Formation from Source-Separated Urine Using Seawater and Brine as Magnesium Sources, Chemosphere, 93, pp. 2738-2747., Vol. 93, pp. 2738-2747DOI
11 
Luz E. B., Yoav B., 2004, Recent Advances in Removing Phosphorus from Wastewater and its Future Use as Fertilizer, Water Research, Luz, E. B. and Yoav, B. (2004). Recent Advances in Removing Phosphorus from Wastewater and its Future Use as Fertilizer, Water Research, 38(19), pp. 4222-4246., Vol. 38, No. 19, pp. 4222-4246DOI
12 
Muryanto S., Bayuseno A. P., 2012, Wastewater Treatment for a Sustainable Future: Overview of Phosphorus Recovery, Applied Mechanics and Materials, Muryanto, S. and Bayuseno, A. P. (2012). Wastewater Treatment for a Sustainable Future: Overview of Phosphorus Recovery, Applied Mechanics and Materials, 110-116, pp. 2043-2048., Vol. 110-116, pp. 2043-2048Google Search
13 
Ryu H. D., Kim T. S., Park H. S., Lee S. I., 2007, Struvite Crystallization of Wastewater Using Bittern, Journal of Korean Society on Water Environment, Ryu, H. D., Kim, T. S., Park, H. S., and Lee, S. I. (2007). Struvite Crystallization of Wastewater Using Bittern, Journal of Korean Society on Water Environment, 23(1), pp. 138-143. [Korean Literature], Vol. 23, No. 1, pp. 138-143Google Search
14 
Tchobanoglous G., Burton F. L., 1991, Wastewater Engineering:Treatment Disposal Reuse, Tchobanoglous G. and Burton, F. L. (1991). Wastewater Engineering:Treatment Disposal Reuse, 3rd Edition, McGraw Hill, New York, N. Y. p. 308., pp. 308Google Search
15 
Yim S. B., 2010, Feasibility of Industrial By-products as a seed Crystal of Struvite Crystallization for the Removal of Highly Concentrated Nitrogen and Phosphorus, Journal of Korean Society on Water Environment, Yim, S. B. (2010). Feasibility of Industrial By-products as a seed Crystal of Struvite Crystallization for the Removal of Highly Concentrated Nitrogen and Phosphorus, Journal of Korean Society on Water Environment, 26(4), pp. 664-672. [Korean Literature], Vol. 26, No. 4, pp. 664-672Google Search