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 
(1993), Photocatalytic Purification and Treatment of Water and Air, Al-Ekabi, H., Butters, B., Delany, D., Holden, W., Powell, T., Story, J., and Ollis, D. F. (1993). Photocatalytic Purification and Treatment of Water and Air, Elsevier Science Publishers B.V., Amsterdam, pp. 719-725., pp. 719-725Google Search
2 
(2007), Preparation and Structural Characterization of Co/Al2O3 Catalysts for the Ozonation of Pyruvic Acid, Applied Catalysis B: Environmental, Alvarez, P. M., Beltrán, F. J., Pocostales, J. P., and Masa, F. J. (2007). Preparation and Structural Characterization of Co/Al2O3 Catalysts for the Ozonation of Pyruvic Acid, Applied Catalysis B: Environmental, 72(3), pp. 322-330., Vol. 72, No. 3, pp. 322-330DOI
3 
(1998), The Ozonation of Pyruvic Acid in Aqueous Solutions Catalyzed by Suspended and Dissolved Manganese, Water research, Andreozzi, R., Caprio, V., Insola, A., Marotta, R., and Tufano, V. (1998). The Ozonation of Pyruvic Acid in Aqueous Solutions Catalyzed by Suspended and Dissolved Manganese, Water research, 32(5), pp. 1492-1496., Vol. 32, No. 5, pp. 1492-1496DOI
4 
(2001), Kinetic Modeling of Pyruvic Acid Ozonation in Aqueous Solutions Catalyzed by Mn(II) and Mn(IV) ions, Water research, Andreozzi, R., Caprio, V., Marotta, R., and Tufano, V. (2001). Kinetic Modeling of Pyruvic Acid Ozonation in Aqueous Solutions Catalyzed by Mn(II) and Mn(IV) ions, Water research, 35(1), pp. 109-120., Vol. 35, No. 1, pp. 109-120DOI
5 
(2007), Gimenoa, Pyruvic Acid Removal from Water by the Simultaneous Action of Ozone and Activated Carbon, Ozone: Science & Engineering, Beltrán, F. J., Acedoa, B., and Rivasa, F. J. (2007). Gimenoa, Pyruvic Acid Removal from Water by the Simultaneous Action of Ozone and Activated Carbon, Ozone: Science & Engineering, 27(2), pp. 159-169., Vol. 27, No. 2, pp. 159-169DOI
6 
(1998), The Use of Ozone and Associated Oxidation Processes in Drinking Water Treatment, Water research, Camel, V. and Bermond, A. (1998). The Use of Ozone and Associated Oxidation Processes in Drinking Water Treatment, Water research, 32(11), pp. 3208-3222., Vol. 32, No. 11, pp. 3208-3222DOI
7 
(1989), Industrial Water Pollution Control, Eckenfelder, W. W. (1989). Industrial Water Pollution Control, McGraw-Hill, New York, pp. 302-306., pp. 302-306Google Search
8 
(2010), Light Induced Multiphase Chemistry of Gas-phase Ozone on Aqueous Pyruvic and Oxalic Acids, Physical Chemistry Chemical Physics, Grgić, I., Nieto-Gligorovski, L. I., Net, S., Temime-Roussel, B., Gligorovski, S., and Wortham, H. (2010). Light Induced Multiphase Chemistry of Gas-phase Ozone on Aqueous Pyruvic and Oxalic Acids, Physical Chemistry Chemical Physics, 12(3), pp. 698-707., Vol. 12, No. 3, pp. 698-707DOI
9 
(2006), Photoinduced Oligomerization of Aqueous Pyruvic acid, The Journal of Physical Chemistry A, Guzman, M. I., Colussi, A. J., and Hoffmann, M. R. (2006). Photoinduced Oligomerization of Aqueous Pyruvic acid, The Journal of Physical Chemistry A, 110(10), pp. 3619-3626., Vol. 110, No. 10, pp. 3619-3626DOI
10 
(2005), Degradation of Halogenated Organic Compounds in Ground Water by Heterogeneous Catalytic Oxidation with Hydrogen Peroxide, Topics in Catalysis, Hofmann, J., Freier, U., Wecks, M., and Demund, A. (2005). Degradation of Halogenated Organic Compounds in Ground Water by Heterogeneous Catalytic Oxidation with Hydrogen Peroxide, Topics in Catalysis, 33(1-4), pp. 243-247., Vol. 33, No. 1-4, pp. 243-247DOI
11 
(2005), Effect of Ozone Oxidation on Biodegradability of Dissolved Organic Compounds in the Landfill Leachate, Journal of Korean Society on Water Environment, Jeong, S. H. and Jeong. B. (2005). Effect of Ozone Oxidation on Biodegradability of Dissolved Organic Compounds in the Landfill Leachate, Journal of Korean Society on Water Environment, 21(1), pp. 1-6. [Korean Literature], Vol. 21, No. 1, pp. 1-6Google Search
12 
(2003), Catalytic Ozonation and Methods of Enhancing Molecular Ozone Reactions in Water Treatment, Applied Catalysis B: Environmental, Kasprzyk-Hordern, B., Ziółek, M., and Nawrocki, J. (2003). Catalytic Ozonation and Methods of Enhancing Molecular Ozone Reactions in Water Treatment, Applied Catalysis B: Environmental, 46(4), pp. 639-669., Vol. 46, No. 4, pp. 639-669DOI
13 
(2010), A Study of Ozonation Characteristics of Bis(2-chloroethyl) Ether, Applied Chemistry for Engineering, Lee, C. G. and Kim, M. C. (2010). A Study of Ozonation Characteristics of Bis(2-chloroethyl) Ether, Applied Chemistry for Engineering, 21(6), 610-615. [Korean Literature], Vol. 21, No. 6, pp. 610-615Google Search
14 
(2004), Degradation of Chlorophenols by Means of Advanced Oxidation Processes: A General Review, Applied Catalysis B: Environmental, Pera-Titus, M., García-Molina, V., Baños, M. A., Giménez, J., and Esplugas, S. (2004). Degradation of Chlorophenols by Means of Advanced Oxidation Processes: A General Review, Applied Catalysis B: Environmental, 47(4), pp. 219-256., Vol. 47, No. 4, pp. 219-256DOI
15 
(2000), Purification/deodorization of Indoor Air and Gaseous Effluents by TiO2 Photocatalysis, Catalysis Today, Pichat, P., Disdier, J., Hoang-Van, C., Mas, D., Goutailler, G., and Gaysse, C. (2000). Purification/deodorization of Indoor Air and Gaseous Effluents by TiO2 Photocatalysis, Catalysis Today, 63(2), pp. 363-369., Vol. 63, No. 2, pp. 363-369DOI
16 
(2004), Determination of Ozonation Rate Constants for Lincomycin and Spectinomycin, Ozone: Science & Engineering, Qiang, Z., Adams, C., and Surampalli, R. (2004). Determination of Ozonation Rate Constants for Lincomycin and Spectinomycin, Ozone: Science & Engineering, 26(6), pp. 525-537., Vol. 26, No. 6, pp. 525-537DOI
17 
(2010), Degradation Mechanism of Alachlor during Direct Ozonation and O3/H2O2 Advanced Oxidation Process, Chemosphere, Qiang, Z., Liu, C., Dong, B., and Zhang, Y. (2010). Degradation Mechanism of Alachlor during Direct Ozonation and O3/H2O2 Advanced Oxidation Process, Chemosphere, 78(5), pp. 517-526., Vol. 78, No. 5, pp. 517-526DOI
18 
(2006), Perovskite Catalytic Ozonation of Pyruvic Acid in Water: Operating conditions influence and kinetics, Applied Catalysis B: Environmental, Rivas, F. J., Carbajo, M., Beltrán, F. J., Acedo, B., and Gimeno, O. (2006). Perovskite Catalytic Ozonation of Pyruvic Acid in Water: Operating conditions influence and kinetics, Applied Catalysis B: Environmental, 62(1), pp. 93-103., Vol. 62, No. 1, pp. 93-103DOI
19 
(2010), Removal of Heavy Metals in the Acid Mine Drainage Using Ozone Oxidation Process, Journal of Korean Society on Water Environment, Seo, S. H., Ahn, K. H., Lee, J. K., Kim, G. J., Chu, K. H., Ra, Y. H., and Ko, K. B. (2010). Removal of Heavy Metals in the Acid Mine Drainage Using Ozone Oxidation Process, Journal of Korean Society on Water Environment, 26(5), pp. 725-731. [Korean Literature], Vol. 26, No. 5, pp. 725-731Google Search
20 
(2003), Ozonation of Naphthalene Sulfonic Acids in Aqueous Solutions: Part II-Relationships of Their COD, TOC Removal and the Frontier Orbital Energies, Water Research, Shiyun, Z., Xuesong, Z., Daotang, L., and Weimin, C. (2003). Ozonation of Naphthalene Sulfonic Acids in Aqueous Solutions: Part II-Relationships of Their COD, TOC Removal and the Frontier Orbital Energies, Water Research, 37(5), pp. 1185-1191., Vol. 37, No. 5, pp. 1185-1191DOI
21 
(2013), A Two-Stage Process, O3 and Subsequent O3/H2O2, for Effective Color Removal from Leather-Dyeing Wastewater: Case Study in the D Industrial Wastewater Treatment Plan, Journal of Korean Society on Water Environment, Yoon, Y., Park, M., Kwon, M., Jung, Y., and Kang, J. (2013). A Two-Stage Process, O3 and Subsequent O3/H2O2, for Effective Color Removal from Leather-Dyeing Wastewater: Case Study in the D Industrial Wastewater Treatment Plan, Journal of Korean Society on Water Environment, 29(1), pp. 74-80. [Korean Literature], Vol. 29, No. 1, pp. 74-80Google Search