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

References

1 
Chen G. H., Wong M. T., Okabe S., Watanabe Y., 2003, Dynamic response of nitrifying activated sludge batch culture to increased chloride concentration, Water Research, Vol. 37, No. 13, pp. 3125-3135DOI
2 
Choi D. H., Cho K. J., Jung J. Y., 2019, Optimization of nitrogen removal performance in a single-stage SBR based on partial nitritation and ANAMMOX, Water Research, Vol. 162, pp. 105-114DOI
3 
D’Aquino A., Kalinainen N., Auvinen H., Andreottola G., Puhakka J. A., Palmroth M. R. T., 2023, Effects of inorganic ions on autotrophic denitrification by Thiobacillus denitrificans and on heterotrophic denitrification by an enrichment culture, Science of The Total Environment, Vol. 901, pp. 165940DOI
4 
Eiroa M., Kennes C., Veiga M. C., 2004, Formaldehyde biodegradation and its inhibitory effect on nitrification, Journal of Chemical Technology and Biotechnology, Vol. 79, No. 5, pp. 499-504DOI
5 
Jang K. O., 2006, A study on the economically biological nitrogen removal method at large-scale plating wastewater treatment plants, Vol. 4, pp. 49-54Google Search
6 
Jung I. C., Kim H. Y., Kang D. H., Jung J. S., Lee S. W., Lim K. T., Kim C. W., 2004, Development of alternative external carbon source from wasting carbonaceous organic resource and full scale application, Journal of Environmental Science International, Vol. 13, No. 10, pp. 911-919DOI
7 
Kim J. S., 2014, The removal of organics and heavy metals in composite plating wastewater using advanced oxidation and coagulation processes, pp. 4-5Google Search
8 
Lim B. G., 2006, Nitrogen and phosphorus removal from plating factory effluent by soil column, pp. 19-24Google Search
9 
Moersidik S. S., Nugroho R., Handayani M., Kamilawati , Pratama M. A., 2020, Optimization and reaction kinetics on the removal of Nickel and COD from wastewater from electroplating industry using Electrocoagulation and advanced oxidation processes, Heliyon, Vol. 6, No. 2, pp. e03319DOI
10 
Ponnusami A. B., Sinha S., Ashokan H., Paul M. V., Hariharan S. P., Arun J., Gopinath K. P., Hoang Le Q., Pugazhendhi A., 2023, Advanced oxidation process (AOP) combined biological process for wastewater treatment: A review on advancements, feasibility and practicability of combined techniques, Environmental Research, Vol. 237, pp. 116944DOI
11 
Rajoria S., Vashishtha M., Sangal V. K., 2022, Treatment of electroplating industry wastewater: a review on the various techniques, Environmental Science and Pollution Research, Vol. 29, No. 48, pp. 72196–72246DOI
12 
Yoon E. S., 2007, Treatment of wastewater containing high concentrations of ammonia using stripping, pp. 1-2Google Search
13 
Yu J. H., Jung G. J., Lee D. H., Ryu J. G., Hong J. S., 1994, Effects of high concentrations of chloride ions on nitrification of ammonia nitrogen, Proceedings of the Korean Society of Environmental Engineers, pp. 197-200Google Search
14 
Yun G. G., Jeong B. G., Lee S. W., Jeong J. H., Kim J. G., Kim J. U., Choe Y. I., Seong N. C., 2020, Break point chlorination (BPC) characteristics for heavy metals removal in plating wastewater treatment, Journal of Environmental Science International, Vol. 29, No. 11, pp. 1055-1064DOI
15 
Yun W. S., Cho K. J., Jung J. Y., Choi D. H., 2024, Aerobic and anoxic utilization of organic matter for flexible nitrite supply in nutrient conversion pathways based on anaerobic ammonium oxidation: Microbial interactive mechanism, Bioresource Technology, Vol. 397, pp. 130473DOI