Department of Civil and Environmental Engineering, Korea Army Academy at Young-Cheon;Department of Civil and Environmental Engineering, Korea Army Academy at Young-Cheon;Department of Civil and Environmental Engineering, Korea Army Academy at Young-Cheon;Department of Civil and Environmental Engineering, Korea Army Academy at Young-Cheon;Beautiful Environmental Construction Co., Ltd.;Beautiful Environmental Construction Co., Ltd.;Department of Civil and Environmental Engineering, Korea Army Academy at Young-Cheon;
효율적인 2-Methylisoborneol, Geosmin의 제거를 위한 Pulsed UV 공정과 Ultrasound 공정의 비교 연구
2. Anselme, C., Suffet, I.H., and Mallevialle, J., 1988, Effects of ozonation on tastes and odors, J. Am. Water Works Assoc., 80(10), 45-51.
3. Bohrerova, Z., Shemer, H., Lantis, R., Impellitteri, C. A., and Linden, K. G., 2008, Comparative Disinfection efficiency of pulsed and continuous-wave UV irradiation technologies, Water Res., 42(12), 2975-2982.
4. Chen, G., Dussert, B.W., and Suffet, I.H., 1997, Evaluation of granular activated carbons for removal of methylisoborneol to below odor threshold concentration in drinking water, Water Res., 31(5), 1155-1163.
5. Chitra, S., Paramasivan, K., Cheralathan, M., and Sinha, P.K., 2012, Degradation of 1,4-dioxane using advanced oxidation processes, Environ. Sci. Pollut. Res., 19(3), 871-878.
6. Ellis, J. and Korth, W., 1993, Removal of geosmin and methylisoborneol from drinking water by adsorption on ultrastable zeolite-Y, Water Res., 27(4), 535-539.
7. GreenEnTech, 2008, The Pilot Study for the On-Site Demonstration of the High-Intensity Pulsed UV Disinfection System for Water Treatment, Ministry of Environment.
8. Karl G. Linden, Gwyam Shin, Jungkeun Lee, Karl Scheible, Chengyue Shen, Phtllis Posy, 2009, Demonstrating 4-log adenovirus inactivation in a medium-pressure UV disinfection reactor, J. Am. Water Works Assoc. 101(3), 90-99.
9. Laughrey, Z., Bear, E., Jones, R., and Tarr, M. A., 2001, Aqueous sonolytic decomposition of polycyclic aromatic hydrocarbons in the presence of additional dissolved species, Ultrason. Sonochem., 8(4), 353-357.
10. Lee, H.U., Han, J.H., Yoon, Y.M., Lee, J.Y., Park, J.W., and Her, N.G., 2014, A study on the synergistic effects of hybrid system simultaneously irradiating the UV and US, J. Korea Geo-Environ. Soc., 15(7), 5-11.
11. Maillacheruvu, K. and Safaai, S., 2002, Naphthalene removal from aqueous systems by sagittarius sp, J. Environ. Sci. Health A Tox. Hazard. Subst., Environ. Eng. 37(5), 845-861.
12. Ministry of Environment, 2010, Drinking Water Guideline
13. Omur-Ozbek P., Little J. C., and Dietrich A. M., 2007, Ability of humans to smell geosmin, 2-MIB and nonadienal in indoor air when using contaminated drinking water, Water Sci. Technol, 55(5), 249-256.
14. Park, J.S., Park, S.Y., Oh, J.I., Jeong, S.J., Lee, M.J., and Her, N.G., 2009, Comparison of naphthalene degradation efficiency and OH radical production by the change of frequency and reaction conditions of ultrasound, Korean Soc. Environ. Eng., 31(2), 79-89.
15. Psillakis, E., Goula, G., Kalogerakis, N., and Mantzavinos, D., 2004, Degradation of polycyclic aromatic hydrocarbons in aqueous solutions by ultrasonic irradiation, J. Hazard. Mater., 8, 845- 861.
16. Rashash, D.M.C., Dietrich, A.M., and Hoehn, R.C., 1997, FPA of selected odorous compounds, J. Am. Water Works Assoc., 89(4), 131-141.
17. Sohn, J., Park, S., and Jung, E., 2012, Removal of taste and odor causing compounds in drinking water using Pulse UV System, J. Korean Soc. Water Wastewater, 26(2), 219-228.
18. Song, W. and O’Shea, K.E., 2007, Ultrasonically induced degradation of 2-methylisoborneol and geosmin, Water Res., 41, 2672-2678.
19. Suffett, I.H., Corado, A., Chou, D., Mcguire, M.J.M., and Butterworth, S., 1996, AWWA taste and odor survey, J. Am. Water Works Assoc., 88(4), 168-180.
20. Thiruvenkatachari, R., Vigneswaran, S., and Moon, I.S., 2008, A review on UV/TiO2 photocatalytic oxidation process, Korean J. Chem. Eng., 25(1), 64-72.
21. Zhou, B., Yuan, R., Shi, C., Yu, L., Gu, J., and Zhang, C., 2010, Biodegradation of geosmin in drinking water by novel bacteria isolated from biologically active carbon, J. Environ. Sci., 23(5), 816-823.