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Application of Water Treatment with Membrane in Seomjin River  

Kim, Jongdoo (Department of Environmental Engineering, Graduate School, The University of Seoul)
Park, Kyungwook (Institute of Construction Technology, KUMHO Engineering & Construction)
Park, Chulhwi (Department of Environmental Engineering, Graduate School, The University of Seoul)
Publication Information
Membrane Journal / v.23, no.1, 2013 , pp. 12-23 More about this Journal
Abstract
On the subject of river bed water in Seomjin river, it had accomplished the verifying experiment of membrane filtration pilot plant for evaluating the applicability of its process throughout the prediction of membrane fouling as a function of the pore size of membrane and the determination of optimum coagulant dosage. On the result of the experiment for the evaluation of the membrane fouling as a function of the pore size, a increasing rate of irreversible resistance of membrane pore size $0.1{\mu}m$ and $0.01{\mu}m$ was measured each $0.44{\times}10^{12}/m^2$ and $0.42{\times}10^{12}/m^2$, respectively. And on the result of Flux-test, it showed that the optimum coagulant dosage was measured lower than the it of the Jar-test. The result to be operated in a condition of a permeate flux $1.0{\sim}1.5m^3/m^2{\cdot}day$ without coagulation and a permeate flux $1.0{\sim}2.0m^3/m^2{\cdot}day$ with coagulation was maintained at stable trans-membrane pressure (TMP) value for 6 months up to. Therefore it showed that the stable operation without the coagulation was possible on permeate flux $1.0{\sim}1.5m^3/m^2{\cdot}day$ in the operation of membrane filtration process.
Keywords
membrane; pore szie; pilot-plant; resistance; seomjin river;
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1 H. Huang, K. Schwab, and J. G. Jacangelo, "Pretreatment for low pressure membrane in water treatment: a review", Environ. Sci. Technol. 43, 3011 (2009).   DOI   ScienceOn
2 K. H. Lee, Y. J. Huh, D. Y. Kim, S. W. Han, D. J. Hwang, and B. J. Lim, "Evaluation for water quality and pollutant load of sumjin river watershed", Proceedings of 2010 Co-Conference of Korea Society on Water Environment and Korean Society of Water and Wastewater, 629 (2010).
3 S. S. Im, K. C. Choi, K. H. Lee, Y. H. Lee, and J. Y. Lee, "A study of spatial distribution of organic matters in sumjin river", Proceedings of 2012 Spring Co-Conference of Korea Society on Water Environment and Korean Society of water and wastewater, 714 (2012).
4 R. Bian, Y. Watanabe, N. Tambo, and G. Ozawa, "Removal of humic substances by UF and NF membrane systems", Wat. Sci. Tech., 40, 122, (1999).
5 A. G. Fane and C. J. D. Fell, "A review of fouling and fouling control in ultrafiltraion", Desalination, 62, 117 (1987).   DOI   ScienceOn
6 L. F. Fu and B. A. Dempsey, "Modeling the effect of particle size and change on the structure of filter cake in ultrafiltration", J. Membr. Sci., 149, 221 (1998).   DOI   ScienceOn
7 K. L. Jones and C. R O'Melia, "Ultrafilration of protein and humic substances; Effect of solution chemistry on fouling and flux decline", J. Membr. Sci., 193, 163 (2001).   DOI   ScienceOn
8 Y. Wei and L. Z. Andrew, "Humic acid Fouling During Microfiltration", J. Membr. Sci., 157, 1 (1999).   DOI   ScienceOn
9 J. G. Jacangelo, E. M. Aieta, K. E. Carns, E. W. Cummings, and J. Mallevialle, "Assessing hollow-filber ultrafiltration for particulate removal", J. AWWA, 87, 68 (1995).   DOI
10 AWWA Membrane Technology Reasearch Committee, 1998 Committee Report; Membrane Process. AWWA., 90(6), 91 (1998).   DOI
11 J. H. Chung, K. H. Choo, and H. S. Park, "Low Pressure Hybrid Membrane Processes for Drinking Water Treatment", Membrane Journal, 17(3), 167 (2007).
12 H. N. Jang, "Advanced water treatment of river water by coagulation-membrane filtration process", Ph. D. Dissertation, Univ. of Kyunghee, Seoul, Korea (2009).
13 C. W. Jung and H. J. Son, "The relationship between disinfection by-product formation and characteristics of natural organic matter in the raw water for drinking water", Journal of Korean Society of Envirnmental Engineers, 26, 457 (2004).
14 Ksrry J. Howe and Mark M. Clark, "Fouling of microfiltration and ultrafiltration membranes by natural waters", Environ. Sci. Technol., 36, 3571 (2002).   DOI   ScienceOn
15 A. l. Schafer, A. G. Fane, and T. D. Waite, "Fouling effect on rejection in the membrane filtration of natural waters", Desalination, 131, 215 (2000).   DOI   ScienceOn
16 S. Minegishi, N. Y. Jang, Y. Watanabe, S. Hirata, and G. Ozawa, "Fouling mechanism of hollow filber UF membrane with pretreatment by Coagulation/Sedimentation Process, Water Science and Technology", Water Supply, 1(4), 49, (2001).
17 C. H Kim, J. L. Lim, H. S. Kim, and S. H. Kim, "Long term operation of ultrafiltration process using river-bed water", Proceedings of 2004 Co-Conference of Korea Society on Water Environment and Korean Society of Water and Wastewater, 601 (2004).
18 J. Mallevaille, P. E. Odendaal, and M. R. Wiesner, Water Treatment Membrane Processes, McGraw-Hill (1996).