Rural Research Institute, Korea Rural Community Corporation;Dept. of Civil and Environmental Engineering, Seoul National University;Dept. of Civil and Environmental Engineering, Seoul National University;Rural Research Institute, Korea Rural Community Corporation;Dept. of Civil and Environmental Engineering, Seoul National University;Dept. of Civil and Environmental Engineering, Seoul National University;
2. 이규연, 2010, 당밀과 탈질미생물을 이용한 질산성 질소 오염 지하수의 현장정화 설계인자에 관한 연구, 서울대학교 석사학위논문집, p. 110.
3. Altschul, S.F., Gish, W., Miller, W., Myers, E., and Lipman, D.J., 1990, Basic local alignment search tool, J. Mol. Biol., 215, 403-410.
4. Aslan, . and Turkman, A., 2003, Biological denitrification of drinking water using various natural organic solid substrates. Water Sci. Technol., 48(11/12), 489-495.
5. Avnimelech, Y., Diab, S., and Kochba, M., 1993, Development and evaluation of a biofilter for turbid and nitrogen rich irrigation water, Water Res., 27(5), 785-790.
6. Boaventura, R.A.R. and Rodrigues, A.E., 1997. Denitrification kinetics in a rotating disk biofilm reactor, Chem. Eng. J., 65, 227-235.
7. Burr, T.J., Schroth, M.N., and Suslow, T., 1978, Increased potato yields by treatment of seedpieces with specific strains of Pseudomonas fluorescens and P. putida., phytopathology, 68, 1377-1383.
8. Canter, L.W, 1997, Treatment measures for nitrate in groundwater. In: Nitrate in groundwater, Lewis publishers, New York, USA.
9. Chou, Y.J., Ouyang, C.F., Kuo, W.L., and Huang, H.L., 2003, Denitrifying characteristics of the multiple stages enhanced biological nutrient removal process with external carbon sources. J. Environ. Sci. Heal. A., 38, 339-352.
10. Cunningham, A., Sharp, R.R., Hiebert, R., and James, G., 2003, Subsurface biofilm barriers for the containment and remediation of contaminated groundwater, Bioremediaton Jour., 7, 151-164.
11. Dandie, C.E., Burton, D.L., Zebarth, B.J., Trevors, J.T., and Goyer, C., 2007, Analysis of denitrification genes and comparison of nosZ, cnorB and 16S rDNA from culturable denitrifying bacteria in potato cropping systems, System. Appl. Microbiol. 30, 128-138.
12. Dutta, L., Nuttall, H.E., Cunningham, A., James, G., and Hiebert, R., 2005, In situ biofilm barriers: case study of a nitrate groundwater plume, Albuquerque, New Mexico. Remediation, Autumn, 101-111.
13. Eckenfelder., W.W., 1989, Industrial water pollution control, 2nd ed. McGraw-Hill Book., New York, USA.
14. Felsenstein, J., 1985, Confidence limits of phylogenies, an approach using the bootstrap, Evolution, 39(4), 783-791.
15. Hallin, S. and Lindgren, P.-E., 1999, PCR detection of genes encoding nitrite reductase in denitrifing bacteria. Appl. Environ. Microbiol. 65, 1652-1657.
16. Her, J.J. and Huang, J.S., 1995, Influences of carbon source and C/N ratio on nitrate/nitrite denitrification and carbon breakthrough, Bioresource Technol., 54, 45-51.
17. Higgins, D.G. and Sharp, P.M., 1988, CLUSTAL: a package for performing multiple sequence alignment on a microcomputer, Gene, 73, 237-244.
18. Horan, N.J., 1990, Biological wasterwater treatment systems, theory and operation, John & Wiley & Sons, Chichester, England.
19. Kapoor, A. and Viraraghavan, T., 1997, Nitrate removal from drinking water- review, J. Environ Eng ASCE, 123(4), 371-380.
20. Kumar, S., Tomura, K., and Nei, M., 1993, MEGA, Molecular Evolution Genetics Analysis, Version 10. Pennsylvania State University, University Park, PA, USA.
21. Lee, D., Lee, I., Choi, Y., and Bae, J., 2001, Effects of external carbon source and empty bed contact time on simultaneous heterotrophic and sulfur-utilizing autotrophic denitrification, Process Biochem., 36, 1215-1224.
22. Lorrain, M.-J., Tartakovsky, B., Peisajovich-gilkstein, A., and Guiot, S.R., 2004, Comparison of different carbon sources for ground water denitrification, Environ. Technol. 25, 1041-1049.
23. Louzeiro, N.R., Mavinic, D.S., Oldham, W.K., Meisen, A., and Gardner, I.S., 2003, Process control and design considerations for methanolinduced denitrification in a sequencing batch reactor, Environ. Technol., 24, 161-169.
24. Mohseni-Bandpi, A., Elliott, D.J. and Momeny-Mazdeh, A., 1999, Denitrification of groundwater using acetate acid as a carbon source. Water Sci. Technol., 40(2), 53-59.
25. Monteith, H.D., Bridle, T.R., and Sutton, P.M., 1980, Industrial waste carbon sources for biological denitrification, Prog Water Tech., 12, 127-141.
26. Moon, H.S., Ahn, K.-H., Lee, S., Nam, K., and Kim, J.Y., 2004, Use of autotrophic sulfur-oxidizers to remove nitrate from bank filtrate in a permeable reactive barrier system, Environ. Pollut., 129, 499-507.
27. Robertson, W.D. and Cherry J.A., 1995, In-situ denitrification of septic-system nitrate using reactive porous media barriers: field trials, Ground Water, 33, 99-111.
28. Saitou, N. and Nei, M., 1987, The neighbor-joining method, a new method for constructing phylogenetic trees, Mol. Biol. Evol., 4(4), 406-425.
29. Schipper, L.A. and Vojvodic-Vukovic, M., 1998, Nitrate removal from ground water using a denitrification wall amended with sawdust: field trials, Jour. Environ. Qual. 27, 664-668.
30. Skrinde, J.R. and Bhagat, S.K., 1982, Industrial wastes as carbon sources in biological denitrification, J. WPCF., 54(4), 370-377.
31. Soares, M.I.M. and Abeliovich, A., 1998, Wheat straw as substrate for water denitrification, Water Res., 32(12), 3790-3794.
32. Su, C. and Puls, R.W., 2007, Removal of added nitrate in the single, binary, and ternary systems of cotton burr compost, zerovalent iron, and sediment: implications for groundwater nitrate remediation using permeable reactive barriers, Chemosphere, 67, 1653-1662.
33. Ten Have, P.J.W., Willers, H.C., and Derikx, P.J.L., 1994, Nitrification and denitrification in an activated-sludge system for supernatant from settled sow manure with molasses as an extra carbon source, Bioresource Technol., 47, 135-141.
34. Throback, I.N., Enwall, K., Jarvis, A., and Hanllin, S., 2004, Reassessing PCR primers targeting nirS, nirK and nosZ genes for community surveys of denitrifying bacteria with DGGE, FEMS, 49, 401-417.
35. Tiedje, J.M., Simkins, S., and Groffman, P.M., 1989, Perspectives on measurement of denitrification in the field including recommended protocols for acetylene based methods, Plant Soil, 115, 261-284.
36. Quan, Z.X., Jin, Y.S., Yin, C.R., Lee, J.J., and Lee, S.T., 2005, Hydrolyzed molasses as an external carbon source in biological nitrogen removal, Bioresource Technol., 96, 1690-1695.
37. Volokita, M., Abeliovich, A., and Soares, M.I.M., 1996a, Denitrification of groundwater using cotton as energy source. Water Sci. Technol., 34(1/2), 379-385.
38. Volokita, M., Belkin, S., Abeliovich, A., and Soares, M.I.M., 1996b, Biological denitrification of drinking water using newspaper, Water Res., 30(4), 965-971.
39. Zumft, W.G., 1992, The denitrifying procaryotes. In A. Balows et al. (ed.) Springer-Verlag, New York. The prokaryotes, Vol. I. 2nd ed.
40. Zumft, W.G., 1997, Cell Biology and Molecular Basis of Denitrification, Microbiol. Molecul. Biology Reviews, 61(4), 533-616.