The Treatment of LNAPL(BETXlMTBE) Contaminated Groundwater Applying Photo-assisted Fenton Reaction with Various Fe(III) Chelator
Park, Jong-Hun;Do, Si-Hyun;Lee, Hong-Kyun;Jo, Young-Hoon;Kong, Sung-Ho;
Department of Chemical Engineering, Hanyang University;Department of Chemical Engineering, Hanyang University;Department of Chemical Engineering, Hanyang University;Department of Chemical Engineering, Hanyang University;Department of Chemical Engineering, Hanyang University;
Photo-assisted Fenton 반응에 다양한 Fe(III) chelator를 적용한 LNAPL(BTEX/MTBE)오염 지하수 처리에 관한 연구
박종훈;도시현;이홍균;조영훈;공성호;
한양대학교 화학공학과;한양대학교 화학공학과;한양대학교 화학공학과;한양대학교 화학공학과;한양대학교 화학공학과;
References
1. 손석규, 이종열, 정재성, 이홍균, 공성호, 2007, 염소계 화합물(TCE, PCE)로 오염된 토양 및 지하수 처리를 위한 실용적 고도산화처리시스템 개발(I), 한국지하수토양환경학회, 12(5), 105-114.
2. Ali, S.A., James, R.B., and Stephen, R.C., 1997, Ferrioxalatemedeatied photodegradation of organic pollutants in contaminated water, Water Res., 31, 787-798
3. Cater, S.R., Stefan, M.L, Bolton, J.R., and Safarzadeh-Amiri, A., 2000, UV/$H_2O_2$ treatment of methyl tert-butyl ether in contaminated waters, Environ. Sci. Tech., 34, 659-662
4. Conaway, C.C., Schroeder, R.E., and Snyder, N.K., 1985, Teratology evaluation of methyl tertiary butyl ether in rats and mice, J. Toxicol. Environ. Health, 16, 797-809
5. Glaze, W.H., Kennke, J.F., and Ferry, J.R., 1993, Chlorinated byproducts from the $TiO_2$-medicated photodegradation of trichloroethylene and tetrachloroethylene in water, Environ. Sci. Tech.,27,177-184
6. Hess, T.F., Lewis, T.A., Crawford, R.L., Katamneni, S., Wells, J.H., and Watts, R.J., 1998, Combined photocatalytic and fungal treatment for the destruction of 2,4,6-trinitrotoluene (TNT), Water Res., 32, 1481-1491
7. Hislop, K.A. and Bolton, J.R., 1999, The photochemical generation of hydroxyl radicals in the UV-vis/ferrioxalate/$H_2O_2$ system, Environ. Sci. Tech., 33,3119-3126
8. Huang, K.C., G.E., Hoag, P.C., Woody, B.A., and Dobbs, G.M., 2001, Oxidation of chlorinated ethenes by potassium permanganate: a kinetics study, J Hazard. Meter., B87, 155-169
9. Jeong, J.S. and Yoon, J., 2004, Dual roles of $CO^{2-.}$ for degrading synthetic organic chemicals in the photoferrioxalate system, Water Res., 38, 3531-3540
10. Kwan, W.P. and Voelker, B.M., 2002, Decomposition of hydrogen peroxide and organic compounds in the presence of dissolved iron and ferrihydrite, Environ. Sci. Tech., 36, 1467-1476
11. Li, K., Stefen, M.I., and Crittenden, J.C., 2004, UV photolysis trichloroethylene product study and kinetic modeling, Environ. Sci. Tech., 38, 6685-6693
12. Peyton, G.R., Bell, O.J., Girin, E., and Lefaive, M.H., 1995, Reductive destruction of water contaminants during treatment with hydroxyl radical processes, Environ. Sci. Tech., 29, 1710-1712
13. Pignatello, J.J., 1992, dark and photoassisted $Fe^{3+}$-catalyzed degradation of chlorophenoxy herbicides by hydrogen peroxide, Environ. Sci. Tech., 26, 944-951
14. Schrank, S.G, Jose, H.J., Moreira, R.F.P.M., and Schober, H.F., 2005, Applicability of Fenton and $H_20_2$/UV reactions in the treatment of tannery waste water, Chemosphere, 60, 644-655
15. Xu, X.R., Li, H.B., Wang, W.H., and Gu, J.D., 2004, Degradation of dyes in aqueous solutions by the Fenton process, Chemosphere, 57, 595-600