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 
Agrawal S. C., Singh V., 2000, Akinete Formation in Three Blue Green Algae and One Green Algae in Relation to Light Intensity, Temperature, Heat Shock and UV Exposure, Folia Microbiology, Agrawal, S. C. and Singh, V. (2000). Akinete Formation in Three Blue Green Algae and One Green Algae in Relation to Light Intensity, Temperature, Heat Shock and UV Exposure, Folia Microbiology, 45, pp. 439-446., Vol. 45, pp. 439-446DOI
2 
Chambers P. A., McGoldrick D. J., Brau R. B., Vis C., Culp J. M., Benoy G. A., 2012, Development of Environmental Thresholds for Nitrogen and Phosphorus in Stream, Journal of Environmental Quality, Chambers, P. A., McGoldrick, D. J., Brau, R. B., Vis, C., Culp, J. M., and Benoy, G. A. (2012). Development of Environmental Thresholds for Nitrogen and Phosphorus in Stream, Journal of Environmental Quality, 41, pp. 7-20., Vol. 41, pp. 7-20DOI
3 
Chang C. W., Shiah F. K., Kwo W., Junn T., 2014, The Role of Food Availability and Phytoplankton Community Dynamics in the Seasonal Succession of Zooplankton Community in a Subtropical reservoir, Limnologiac, Chang, C. W., Shiah, F. K., Kwo, W., and Junn, T. (2014). The Role of Food Availability and Phytoplankton Community Dynamics in the Seasonal Succession of Zooplankton Community in a Subtropical reservoir, Limnologiac, 46, pp. 131-138., Vol. 46, pp. 131-138DOI
4 
Chung J., Kim H. S., Kim Y. J., 1994, Structure of Phytoplankton Community in the Nakdong River Estuary Dam, Korean Journal of Limnology, Chung, J., Kim, H. S., and Kim, Y. J. (1994). Structure of Phytoplankton Community in the Nakdong River Estuary Dam, Korean Journal of Limnology, 27(1), pp. 33-46. [Korean Literature], Vol. 27, No. 1, pp. 33-46Google Search
5 
Doyon P., Klein B., Ingram R. G., Legendre L., Tremblay J. E., Therriault J. C., 2000, Influence of Wind Mixing and upper Layer Stratification on Phytoplankton Biomass in the Gulf of St. Lawrene, Deep Sea ResearchII, Doyon, P., Klein, B., Ingram, R. G., Legendre, L., Tremblay, J. E., and Therriault. J. C. (2000). Influence of Wind Mixing and upper Layer Stratification on Phytoplankton Biomass in the Gulf of St. Lawrene, Deep Sea ResearchII, 47, pp. 415-433., Vol. 47, pp. 415-433Google Search
6 
Drapcho C. M., Brune D. E., 2000, The Partitioned Aquaculture System: Impact of Design and Environmental Parameters on Algal Productivity and Photosynthetic Oxygen Production, Aquaculture Engineering, Drapcho, C. M. and Brune, D. E. (2000). The Partitioned Aquaculture System: Impact of Design and Environmental Parameters on Algal Productivity and Photosynthetic Oxygen Production, Aquaculture Engineering, 21, pp. 151-168., Vol. 21, pp. 151-168DOI
7 
Gry M. B., Baija B., Ingrida P., Santa B., Christian B., Serge Y., 2003, Plankton Community Composition in Relation to Availability and Uptake of Oxidied and Reduced Nitrogen, Aquat Microbiology Ecology, Gry, M. B., Baija, B., Ingrida, P., Santa, B., Christian, B., and Serge, Y. (2003). Plankton Community Composition in Relation to Availability and Uptake of Oxidied and Reduced Nitrogen, Aquat Microbiology Ecology, 30, pp. 263-274., Vol. 30, pp. 263-274DOI
8 
Haney J. F., Hall D. J., 1972, Sugar-Coated Daphia; a Preservation Technique for Cladocera, Limnology and Oceanography, Haney, J. F. and Hall, D. J. (1972). Sugar-Coated Daphia; a Preservation Technique for Cladocera, Limnology and Oceanography, 18, pp. 331-333., Vol. 18, pp. 331-333Google Search
9 
Isabel M. P., Francisco M., Florencio J., 2003, Regulation of Ammonium in Cyanobaceria, Plant Physiology and Biochemistry, Isabel, M. P., Francisco, M., and Florencio, J. (2003). Regulation of Ammonium in Cyanobaceria, Plant Physiology and Biochemistry, 41, pp. 595-603., Vol. 41, pp. 595-603DOI
10 
Jan A., Freund S. M., Bettina S., Karen W., Ulrike F., 2006, Bloom Dynamics in a Seasonally Forced Phytoplankton-Zooplankton Model: Trigger Mechanisms and Timing Effects, Ecological Complexity, Jan, A., Freund, S. M., Bettina, S., Karen, W., and Ulrike, F. (2006). Bloom Dynamics in a Seasonally Forced Phytoplankton-Zooplankton Model: Trigger Mechanisms and Timing Effects, Ecological Complexity, 3, pp. 129-139., Vol. 3, pp. 129-139DOI
11 
Joung S. H., Park H. K., Lee S. H., 2013, Effect of Climate Change for Diatom Bloom at Winter and Spring Season in Mulgeum Station of the Nakdong River, South Korea, Journal of Korean Society on Water Environment, Joung, S. H., Park, H. K., and Lee, S. H. (2013). Effect of Climate Change for Diatom Bloom at Winter and Spring Season in Mulgeum Station of the Nakdong River, South Korea, Journal of Korean Society on Water Environment, 29(2), pp. 155- 164. [Korean Literature], Vol. 29, No. 2, pp. 155-164Google Search
12 
Jun K. S., Kim J. S., 2011, The Four Major Rivers Restoration Project: Impacts on River Flows, KSCE Journal of Civil Engineering, Jun, K. S. and Kim, J. S. (2011). The Four Major Rivers Restoration Project: Impacts on River Flows, KSCE Journal of Civil Engineering, 15(2), pp. 217-224., Vol. 15, No. 2, pp. 217-224DOI
13 
Kedong Y., Paul J., Harrison M. B., Chung C. H., 2001, Ratio of Nitrogen to Phosphorus in the Pearl River and Effects of the Estuarine Coastal Waters: Nutrient Management Strategy in Hong Kong, Physics and Chemistry of the Earth, Kedong, Y., Paul, J., Harrison, M. B., and Chung, C. H. (2001). Ratio of Nitrogen to Phosphorus in the Pearl River and Effects of the Estuarine Coastal Waters: Nutrient Management Strategy in Hong Kong, Physics and Chemistry of the Earth, 36, pp. 411-419., Vol. 36, pp. 411-419Google Search
14 
Li L., Zhu W., Cheng F. L., Wang T. T., Tan X., 2012, Effects of Continuous Water Flow on Growth of the Microcystis Aeruginosa under High Nutrient Levels, Energy Procedia, Li, L., Zhu, W., Cheng, F. L., Wang, T. T., and Tan, X. (2012). Effects of Continuous Water Flow on Growth of the Microcystis Aeruginosa under High Nutrient Levels, Energy Procedia, 17, pp. 1793-1797., Vol. 17, pp. 1793-1797DOI
15 
Marshall J. S., Huang Y., 2010, Simulation of Light-Limited Algae Growth in Homogeneous Turbulence, Chemical Engineering Science, Marshall, J. S. and Huang, Y. (2010). Simulation of Light-Limited Algae Growth in Homogeneous Turbulence, Chemical Engineering Science, 65, pp. 3865-3875., Vol. 65, pp. 3865-3875DOI
16 
Moon S. G., Chung J. M., Choi C. M., 2001, The Structure of Phytoplankton Community in the Middle-Lower Part of the Nakdong River, Korean Environmental Sciences Sociey, Moon, S. G., Chung, J. M., and Choi, C. M. (2001). The Structure of Phytoplankton Community in the Middle-Lower Part of the Nakdong River, Korean Environmental Sciences Sociey, 10(1), pp. 41-45. [Korean Literature], Vol. 10, No. 1, pp. 41-45Google Search
17 
Rao D. L. N., Burns R. G., 1991, The Influence of Blue-Green Algae on the Biological Amelioration of Alkali Soils, Biology and Fertility Soils, Rao, D. L. N. and Burns, R. G. (1991). The Influence of Blue-Green Algae on the Biological Amelioration of Alkali Soils, Biology and Fertility Soils, 11, pp. 306-312., Vol. 11, pp. 306-312DOI
18 
Redfield A. C., 1958, The Biological Control of Chemical Factors in the Environment, American Science, Redfield, A. C. (1958). The Biological Control of Chemical Factors in the Environment, American Science, 46, pp. 205-221., Vol. 46, pp. 205-221Google Search
19 
Reynolds C. S., 1999, The Optimum Resource Ratio(N:P) for the Growth of Microcystis Aeruginosa with Abundant Nutrients, Architecture And Microbiology, Reynolds, C. S. (1999). The Optimum Resource Ratio(N:P) for the Growth of Microcystis Aeruginosa with Abundant Nutrients, Architecture And Microbiology, 23-35, p. 146., Vol. 23-35, pp. 146Google Search
20 
Richmond A., Vonshak A., 1978, Spirulina Culture in Israel, Arch, Hydrobiologia, Richmond, A. and Vonshak, A. (1978). Spirulina Culture in Israel, Arch, Hydrobiologia, 11, pp. 274-280., Vol. 11, pp. 274-280Google Search
21 
Rita B., Domingues C. S., Helena G., 2007, Impact of Reservoir Filling on Phytoplakton Succession and Cyanobacteria Blooms in a Temperate Estuary, Estuarine, Coastal and Shelf Science, Rita, B., Domingues, C. S., and Helena, G. (2007). Impact of Reservoir Filling on Phytoplakton Succession and Cyanobacteria Blooms in a Temperate Estuary, Estuarine, Coastal and Shelf Science, 74, pp. 31-43., Vol. 74, pp. 31-43DOI
22 
Schindler D. W., 1997, Evolution of Phosphorus Limtation in Lakes, Science, Schindler, D. W. (1997). Evolution of Phosphorus Limtation in Lakes, Science, 195, pp, 260-262., Vol. 195, pp. 260-262Google Search
23 
Shitao P., Xuebo Q., Honghua S., Ran Z., Mingxin D., Dewen D., 2012, Distribution and Controlling Factors of Phytoplankton Assemblages in a Semi-Enclosed Bay during Spring and Summer, Marine-Pollution Bulletin, Shitao, P., Xuebo, Q., Honghua, S., Ran, Z., Mingxin, D., and Dewen, D. (2012). Distribution and Controlling Factors of Phytoplankton Assemblages in a Semi-Enclosed Bay during Spring and Summer, Marine-Pollution Bulletin, 64, pp. 941-948., Vol. 64, pp. 941-948DOI
24 
Smith V. H., 1983, Low Nitrogen to Phosphorus Ratios Favor Dominance by Blue-Green Algae in Lake Phytoplankton, Science, Smith, V. H. (1983). Low Nitrogen to Phosphorus Ratios Favor Dominance by Blue-Green Algae in Lake Phytoplankton, Science, 221, pp. 669-671., Vol. 221, pp. 669-671DOI
25 
Son H. J., 2013, Changes of Dominant Phytoplankton Community in Downstream of the Nakdong River: from 2002 to 2012, Korean Society of Environmental Engineers, Son, H. J. (2013a). Changes of Dominant Phytoplankton Community in Downstream of the Nakdong River: from 2002 to 2012, Korean Society of Environmental Engineers, 35(4), pp. 289-293. [Korean Literature], Vol. 35, No. 4, pp. 289-293DOI
26 
Son H. J., 2013, The Analysis of Phytoplankton Community Structure in the Middle-Lower Part of the Nakdong River, Korean Society of Environmental Engineers, Son, H. J. (2013b). The Analysis of Phytoplankton Community Structure in the Middle-Lower Part of the Nakdong River, Korean Society of Environmental Engineers, 35(6), pp. 430-435. [Korean Literature], Vol. 35, No. 6, pp. 430-435DOI
27 
Teubner K., Feyerabend R., Henning M., Nicklisch A., Woitke P., Kohl J. G., 1997, Alternative Blooming of Aphanizomenon flos-aquae or Planktothrix Agardhii Induced by the Timing of the Critical Nitrogen:Phosphorus Ratio in Hypertrophic Riverine Lakes, Archiv fuer Hydrobiologie, Advances in Limnolology, Teubner, K., Feyerabend, R., Henning, M., Nicklisch, A., Woitke, P., and Kohl, J. G. (1997). Alternative Blooming of Aphanizomenon flos-aquae or Planktothrix Agardhii Induced by the Timing of the Critical Nitrogen:Phosphorus Ratio in Hypertrophic Riverine Lakes, Archiv fuer Hydrobiologie, Advances in Limnolology, 54, pp. 325-344., Vol. 54, pp. 325-344Google Search
28 
Weissman J. C., Goebal R. P., Benemann R. J., 1988, Photobioreactor Design: Mixing, Carbon Utilization and Oxygen Accumulation, Biotechlogy and Bioengineering, Weissman, J. C., Goebal, R. P., and Benemann, R. J. (1988). Photobioreactor Design: Mixing, Carbon Utilization and Oxygen Accumulation, Biotechlogy and Bioengineering, 31, pp. 336-344., Vol. 31, pp. 336-344DOI
29 
Wei Z., Lei W., Lianfan Z., 2010, Effect of Nutrient Level on Phytplankton Community Structure in Different Water Bodies, Journal of Environmental Sciences, Wei, Z., Lei, W., and Lianfan, Z. (2010). Effect of Nutrient Level on Phytplankton Community Structure in Different Water Bodies, Journal of Environmental Sciences, 22(1), pp. 32-39., Vol. 22, No. 1, pp. 32-39DOI
30 
Wetzel R. G., Linkens G. E., 1991, Limnological Analyses, Wetzel, R. G. and Linkens, G. E. (1991). Limnological Analyses, 2nd Edition, New York, Springer-verlag.Google Search
31 
White E., Payne G., Pickmere S., Woods P., 1991, Seasonal Variation in Nutrient Limitation of the Algal Community in Lake Horowhenua, New Zealand, New Zealand Journal of Marine And Freshwater Research, White, E., Payne, G., Pickmere, S., and Woods, P. (1991). Seasonal Variation in Nutrient Limitation of the Algal Community in Lake Horowhenua, New Zealand, New Zealand Journal of Marine And Freshwater Research 25, pp. 311-316., Vol. 25, pp. 311-316DOI
32 
William H., Thomas C., Gibson H., 1990, Effects of Small-Scale Turbulence on Microalgae, Journal of Applied Phycology, William, H., Thomas, C., and Gibson, H. (1990). Effects of Small-Scale Turbulence on Microalgae, Journal of Applied Phycology, 2, pp. 71-77., Vol. 2, pp. 71-77DOI
33 
Wollenberg A. L., 1977, Redundancy Analysis. An Alternative for Cononical Correlation Analysis, Psychometrika, Wollenberg, A. L. (1977). Redundancy Analysis. An Alternative for Cononical Correlation Analysis, Psychometrika, 42, pp. 207-219., Vol. 42, pp. 207-219DOI
34 
Xia L., Xiaohua L., Yuwei C., 2011, The Effects of Temperature and Nutrient Ratios on Microcystis Blooms in Lake Taihu, China: An 11-Year Investigation, Harmful Algae, Xia, L., Xiaohua, L., and Yuwei, C. (2011). The Effects of Temperature and Nutrient Ratios on Microcystis Blooms in Lake Taihu, China: An 11-Year Investigation, Harmful Algae, 10, pp. 337-343., Vol. 10, pp. 337-343DOI
35 
Xinqiang L., Sirui Z., Rongzhong Y., Ru G., Chunyan Z., Chaodong F., Guangming T., Yingxu. C., 2014, Biological Thresholds of Nitrogen and Phosphorus in a Typical Urban River System of the Yangtz Delta, China, Environmental Pollution, Xinqiang, L., Sirui, Z., Rongzhong, Y., Ru, G., Chunyan, Z., Chaodong, F., Guangming, T., and Yingxu. C. (2014). Biological Thresholds of Nitrogen and Phosphorus in a Typical Urban River System of the Yangtz Delta, China, Environmental Pollution, 192, pp. 251-258., Vol. 192, pp. 251-258DOI
36 
Yu J. J., Lee H. J., Lee K. L., Lee I. J., Jung G. Y., Cheon S. U., 2014, Effects of Environmental Factors on Algal Communities in the Nakdong River, Journal of Korean Society on Water Environment, Yu, J. J., Lee, H. J., Lee, K. L., Lee, I. J., Jung, G. Y., and Cheon, S. U. (2014). Effects of Environmental Factors on Algal Communities in the Nakdong River, Journal of Korean Society on Water Environment, 30(5), pp. 539-548. [Korean Literature], Vol. 30, No. 5, pp. 539-548DOI