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 Methods for the Examination of Water and Wastewater, American Public Health Association(APHA). (2012). Standard Methods for the Examination of Water and Wastewater, 22th ed, American Public Health Association, Washington, D.C.Google Search
2 
Barros A. I., Gonçalves A. L., Simões M., Pires J. C. M., 2015, Harvesting Techniques Applied to Microalgae: A Review, Renewable and Sustainable Energy Reviews, Barros, A. I., Gonçalves, A. L., Simões, M., and Pires, J. C. M. (2015). Harvesting Techniques Applied to Microalgae: A Review, Renewable and Sustainable Energy Reviews, 41, pp. 1489-1500., Vol. 41, pp. 1489-1500DOI
3 
Becker W., 2004, Handbook of Microalgae Culture, Becker, W. (2004). Microalgae in Human and Animal Nutrition, In: Richmond A, editor. Handbook of Microalgae Culture, Oxford: Blackwell Publishing Ltd., pp. 312-351., pp. 312-351Google Search
4 
Cerff M., Morweiser M., Dillschneider R., Michel A., Menzel K., Posten C., 2012, Harvesting Fresh Water and Marine Algae by Magnetic Separation: Screening of Separation Parameters and High Gradient Magnetic Filtration, Bioresource Technology, Cerff, M., Morweiser, M., Dillschneider, R., Michel, A., Menzel, K., and Posten, C. (2012). Harvesting Fresh Water and Marine Algae by Magnetic Separation: Screening of Separation Parameters and High Gradient Magnetic Filtration, Bioresource Technology, 118, pp. 289-295., Vol. 118, pp. 289-295DOI
5 
Chisti Y., 2007, Biodiesel from Microalgae, Biotechnology Advances, Chisti, Y. (2007). Biodiesel from Microalgae, Biotechnology Advances, 25(3), pp. 294-306., Vol. 25, No. 3, pp. 294-306DOI
6 
Choi H. J., Yu S. W., 2015, Influence of crude glycerol on the biomass and lipid content of microalgae, Biotechnology & Biotechnological Equipment, Choi, H. J. and Yu, S. W. (2015). Influence of crude glycerol on the biomass and lipid content of microalgae, Biotechnology & Biotechnological Equipment, DOI: 10.1080/13102818.2015.1013988.DOI
7 
Danquah M. K., Ang L., Uduman N., Moheimani N., Forde G. M., 2009, Dewatering of Microalgae Culture for Biodiesel Production: Exploring Polymer Flocculation and Tangential Flow Filtration, Journal of Chemical Technology and Biotechnology, Danquah, M. K., Ang, L., Uduman, N., Moheimani, N., and Forde, G. M. (2009). Dewatering of Microalgae Culture for Biodiesel Production: Exploring Polymer Flocculation and Tangential Flow Filtration, Journal of Chemical Technology and Biotechnology, 84, pp. 1078-1083., Vol. 84, pp. 1078-1083DOI
8 
Dassey A. J., Theegala C. S., 2013, Harvesting Economics and Strategies using Centrifugation for Cost Effective Separation of Microalgae Cells for Biodiesel Application, Bioresources Technology, Dassey, A. J. and Theegala, C. S. (2013). Harvesting Economics and Strategies using Centrifugation for Cost Effective Separation of Microalgae Cells for Biodiesel Application, Bioresources Technology, 128, pp. 214-215., Vol. 128, pp. 214-215Google Search
9 
Farooq W., Lee Y. C., Han J. I., Darpito C. H., Choi M., Yang J. W., 2013, Efficient Microalgae Harvesting by Organo-Building Blocks of Nanoclays, Green Chemistry, Farooq, W., Lee, Y. C., Han, J. I., Darpito, C. H., Choi, M., and Yang, J. W. (2013). Efficient Microalgae Harvesting by Organo-Building Blocks of Nanoclays, Green Chemistry, 15, pp. 749-755., Vol. 15, pp. 749-755DOI
10 
Gerde J. A., Yao L., Wen Z., Wang T., 2014, Microalgae Flocculation: Impact of Flocculant Type, Algae Species and Cell Concentration, Algal Research, Gerde, J. A., Yao, L., Wen, Z., and Wang, T. (2014). Microalgae Flocculation: Impact of Flocculant Type, Algae Species and Cell Concentration, Algal Research, 3, pp. 30-35., Vol. 3, pp. 30-35DOI
11 
Habib M. A. B., Parvin M., 2008, FAO fisheries and aquaculture circular, Habib, M. A. B. and Parvin, M. (2008). A Review on Culture, Production and Use of Spirulina as Food for Humans and Feeds for Domestic Animals and Fish. In: Huntington, T. C. and Hasan, M .R., editors. FAO fisheries and aquaculture circular No. 1034, Rome: Food and Agriculture Organization of the United Nations.Google Search
12 
2014, World Energy Outlook 2014, Intional Energy Agency (IEA). (2014). World Energy Outlook 2014, ISBN 978-92-64-20804-9, LondonGoogle Search
13 
Kong W. B., Yang H., Cao Y. T., Song H., Hua S. F., Xia C. G., 2013, Effects of Glycerol and Glucose on the Enhancement of Biomass, Lipid and Soluble Carbohydrate Production by Chlorella vulgaris, Food Technology and Biotechnology, Kong, W. B., Yang, H., Cao, Y. T., Song, H., Hua, S. F., and Xia, C. G. (2013). Effects of Glycerol and Glucose on the Enhancement of Biomass, Lipid and Soluble Carbohydrate Production by Chlorella vulgaris, Food Technology and Biotechnology, 51, pp. 62-69., Vol. 51, pp. 62-69Google Search
14 
Lee A., Lewis D., Ashman P., 2009, Microbial Flocculation, a Potentially Low-Cost Harvesting Technique for Marine Microalgae for Production of Biodiesel, Journal of Applied Phycology, Lee, A., Lewis, D., and Ashman, P. (2009). Microbial Flocculation, a Potentially Low-Cost Harvesting Technique for Marine Microalgae for Production of Biodiesel, Journal of Applied Phycology, 21, pp. 559-567., Vol. 21, pp. 559-567DOI
15 
Lee Y. C., Kim B., Farooq W., Chung J., Han J. I., Shin H. J., Jeong S. H., Park J. Y., Lee J. S., Oh Y. K., 2013, Harvesting of Oleaginous Chlorella sp. by Organoclays, Bioresource Technology, Lee, Y. C., Kim, B., Farooq, W., Chung, J., Han, J. I., Shin, H. J., Jeong, S. H., Park, J. Y., Lee, J. S., and Oh, Y. K. (2013) Harvesting of Oleaginous Chlorella sp. by Organoclays. Bioresource Technology, 132, pp. 440-445., Vol. 132, pp. 440-445DOI
16 
Letelier Gordo C. O., Holdt S. L., De Francisci D., Karakashev D. B., Angelidaki I., 2014, Effective Harvesting of the Microalgae Chlorella protothecoides via Bioflocculation with Cationic Starch, Bioresource Technology, Letelier Gordo, C. O., Holdt, S. L., De Francisci, D., Karakashev, D. B. and Angelidaki, I. (2014). Effective Harvesting of the Microalgae Chlorella protothecoides via Bioflocculation with Cationic Starch, Bioresource Technology, 167, pp. 214-218., Vol. 167, pp. 214-218DOI
17 
Liu D., Wang P., Wei G., Dong W., Hui F., 2013, Removal of Algal Blooms from Freshwater by the Coagulation-Magnetic Separation Method, Environmental Science and Pollution Research International, Liu, D., Wang, P., Wei, G., Dong, W., and Hui, F. (2013). Removal of Algal Blooms from Freshwater by the Coagulation-Magnetic Separation Method, Environmental Science and Pollution Research International, 20, pp. 60-65., Vol. 20, pp. 60-65DOI
18 
Molina Crima E., Belarbi E. H., Acién Fernández F. G., Robles Medina A., Chisti Y., 2003, Recovery of Microalgae Biomass and Metabolites: Process Optionss and Economics, Biotechnology Advantage, Molina Crima, E., Belarbi, E. H., Acién Fernández, F. G., Robles Medina, A., and Chisti, Y. (2003). Recovery of Microalgae Biomass and Metabolites: Process Optionss and Economics, Biotechnology Advantage, 20, pp. 491-515., Vol. 20, pp. 491-515DOI
19 
Moreno-Garrido I., 2008, Microalgae Immobilization: Current Techniques and Uses, Bioresource Technology, Moreno-Garrido, I. (2008). Microalgae Immobilization: Current Techniques and Uses, Bioresource Technology, 99(10), pp. 3949-3964., Vol. 99, No. 10, pp. 3949-3964DOI
20 
Oncel S. S., 2013, Microalgae for a Macroenergy World, Renewable and Sustainable Energy Reviews, Oncel, S. S. (2013). Microalgae for a Macroenergy World, Renewable and Sustainable Energy Reviews, 26, pp. 241-264., Vol. 26, pp. 241-264DOI
21 
Papazi A., Makridis P., Divanach P., 2010, Harvesting Chlorella minutissima using Cell Coagulants, Journal of Applied Phycology, Papazi, A., Makridis, P., and Divanach, P. (2010). Harvesting Chlorella minutissima using Cell Coagulants, Journal of Applied Phycology, 22, 349-355., Vol. 22, pp. 349-355DOI
22 
Reddy D. H. K., Lee S. M., Kim J. O., 2013, A Review on Emerging Applications of Natural Sericite and Its Composites, World Applied Science Journal, Reddy, D. H. K., Lee, S. M., and Kim, J. O. (2013) A Review on Emerging Applications of Natural Sericite and Its Composites, World Applied Science Journal, 27(11), pp. 1514-1523., Vol. 27, No. 11, pp. 1514-1523Google Search
23 
Salim S., Bosma R., Vermue M. H., Wijffels R. H., 2011, Harvesting of Microalgae by Bioflocculation, Journal of Applied Phycology, Salim, S., Bosma, R., Vermue, M. H., and Wijffels, R. H. (2011). Harvesting of Microalgae by Bioflocculation, Journal of Applied Phycology, 23, pp. 849-855., Vol. 23, pp. 849-855DOI
24 
Semerjian L., Ayoub G. M., 2003, High-pH-Magnesium Coagulation-Flocculation in Wastewater Treatment, Advances in Environmental Research, Semerjian, L. and Ayoub, G. M. (2003). High-pH-Magnesium Coagulation-Flocculation in Wastewater Treatment, Advances in Environmental Research, 7(2), pp. 389-403., Vol. 7, No. 2, pp. 389-403DOI
25 
Show K. Y., Lee D. J., 2014, Biofuels from Algae, Show, K. Y. and Lee, D. J. (2014). Algal Biomass Harvesting, In: pandey A., Lee, D. J., Chisti, Y., and Soccol, C. R., Editors. Biofuels from Algae, Burlington: Elsevier, pp. 85-110., pp. 85-110Google Search
26 
Smith B. T., Davis R. H., 2012, Sedimentation of Algae Flocculated Using Naturally-Available, Magnesium-Based Flocculants, Algal Research, Smith, B. T. and Davis, R. H. (2012). Sedimentation of Algae Flocculated Using Naturally-Available, Magnesium-Based Flocculants, Algal Research, 1, pp. 32-39., Vol. 1, pp. 32-39DOI
27 
Şirin S., Trobajo R., Ibanez C., Salvadó J., 2012, Harvesting the Microalgae Phaeodactylum tricornutum with Polyaluminum Chloride, Aluminium sulphate, Chitosan and Alkalinity-Induced Flocculation, Journal of Applied Phycology, Şirin, S., Trobajo, R., Ibanez, C., and Salvadó, J. (2012). Harvesting the Microalgae Phaeodactylum tricornutum with Polyaluminum Chloride, Aluminium sulphate, Chitosan and Alkalinity-Induced Flocculation, Journal of Applied Phycology, 24, pp. 1067-1080., Vol. 24, pp. 1067-1080DOI
28 
Vandamme D., Foubert I., Muylaert K., 2013, Flocculation as a Low-Cost Method for Harvesting Microalgae for Bulk Biomass Production, Trends Biotechnology, Vandamme, D., Foubert, I. and Muylaert, K. (2013). Flocculation as a Low-Cost Method for Harvesting Microalgae for Bulk Biomass Production, Trends Biotechnology, 31, pp. 233-239., Vol. 31, pp. 233-239DOI
29 
Vandamme D., Foubert I., Fraeye I., Meesschaert B., Muylaert K., 2012, Flocculation of Chlorella vulgaris Induces by High pH: Role of Magnesium and Calcium and Practical Implications, Bioresources Technology, Vandamme, D., Foubert, I., Fraeye, I., Meesschaert, B., and Muylaert, K. (2012). Flocculation of Chlorella vulgaris Induces by High pH: Role of Magnesium and Calcium and Practical Implications, Bioresources Technology, 105, pp. 114-119., Vol. 105, pp. 114-119DOI
30 
Vandamme D., Foubert I., Meesschaert B., Muylaert K., 2010, Flocculation of Microalgae Using Cationic Starch, Journal of Applied Phycology, Vandamme, D., Foubert, I., Meesschaert, B., and Muylaert, K. (2010). Flocculation of Microalgae Using Cationic Starch, Journal of Applied Phycology, 22, pp. 525-530., Vol. 22, pp. 525-530DOI