A Study for Reductive Degradation and Surface Characteristics of Hexachloroethane by Iron Sulfide ($FeS,\;FeS_{2}$)
Park Sang-Won;Kim Sung-Kuk;Heo Jae-Eun;
Faculty of Environmental Science and Engineering, Keimyung University;Faculty of Environmental Science and Engineering, Keimyung University;Faculty of Environmental Science and Engineering, Keimyung University;
황화철($FeS,\;FeS_{2}$)을 이용한 헥사클로로에탄의 환원적 분해반응과 표면특성에 관한 연구
박상원;김성국;허재은;
계명대학교 환경학부;계명대학교 환경학부;계명대학교 환경학부;
References
1. 김성국, 박상원, 2004, 철 광물에 의한 헥사클로에탄의 환원적 분해, 반응속도 연구, 한국지하수토양환경, 9(2), 20-27
2. Barbash, J. and Roberts, P.V., 1986, Volatile organic chemical contamination of ground water resources in the U. S., J. Water Poll. Control Feder., 58, 343-348
3. Benjamin, M.M. and Leckie, J.O., 1989, Multiple-site adsorption of Cd, Cu, Zn, and Pb on amophous iron oxyhydroxide. J. Colloid lntf. Sci., 79, 209
4. Butler, E.C. and Kim, F.H., 1999, Kinetics of the transformation of trichloroethene and tetrachloroethylene by iron sulfide, Environ. Sci. Technol., 33, 2021-2027
5. Chern, J.M., 1987, Simulation of colloidal destabilization with metal coagulants, Ph. D Thesis, University of Delaware
6. Davis, J.A.R., James, O., and Leckie, J.O., 1978, Surface ionization and complexation at the oxide/water interface, J. Colloid Intf Sci., 63, 480
7. Day, R.E. and Parfitt, G.D., 1967, Adsorption at the solid-liquid interface. J. Phys. Chem., 71, 3073
8. Fan, A.M., 1988, Trichloroethylene: water contamination and health risk assessment, In: G. W. Ware, Reviews of Environmental Contamination and Toxicology, Spronger-Verlag, New York, NY., p. 55-92
9. Haim A., 1983, Mechanisms of electron transfer reaction, The bridged activated complex, Progr. Inorg. Chem., 30, 273-357
10. Huang, C.P., 1981, The surface acidity of hydrous solide, adsorption of inorganics at solid-liquid interface, Ed., Anderson, M. A. and Rubin, A. J., Ann Arbor Science, Ann Arbor, Mich
11. Matheson, L.J. and Trathnyek, G., 1994, Reductive dehalogenation of chlorinated methanes by iran metal. Environ. Sci. Technol., 28(12), 2045-2053
12. Park, S.W. and Huang, C.P., 1989, Chemical substitution reaction between Cu(II) and Hg(II) and Hydrous CdS(s)., Water Research, 23, 1527
13. Park, S.W., 1987, Specific chemical reaction at the cadmimum sulfide-water interface. Ph. D. Thesis, University of Delaware
14. Silverman J. and Dodson, R.W., 1952, The exchange reaction between the two oxidation states of iron in acid solution, J. Phys. Chem., 56, 846-852
15. Sivavec, T.M., Homey, D.P., Baghel, S.S., 1995, Emerging technologies in hazardous waste management VII, ACS Special Symposium, September, 17-20
16. Stumm, W., Kummert, R., and Sigg, L., 1980, A liquid exchange model for the adsorption of inorganic and organic ligands at hydrous oxide interference, Croat. Chim. Acta., 52, 291-302
17. Sun, Z., Forsling, W., Ronngren, L., and Sjoberg, S., 1991, J. miner. Process, 33, 83-93
18. Vogel, T.M., Criddle, C.S., and McCarty, P.L., 1987, Transformations of halogenated aliphatic compounds. Environ. Sci. Technol., 21(8), 1023-1030
19. Wehrli, B., 1990, Redox reactions of metal ions at mineral surfaces, Aquatic chemical kinetics: Reaction rates of processes in natural waters, Ed., Stumn, M., John Wiley & Sons, Inc., p. 311-336
20. William, A.A., William, P.B., and Roberts, L., 1999, Polychlorinated ethane reaction with zero-valent zinc, pathways and rate control, J. Contaminant Hydrology, 40, 183-200