Evaluation of the Laboratory-Scale Cometabolic Air Sparging Process : Characterization of Indigeneous Microorganism on MTBE Degradation
An, Sang-Woo;Lee, Si-Jin;Chang, Soon-Woong;
Department of Civil & Environmental Engineering, Hanyang University;Department of Environmental Energy & System Engineering, Kyonggi University;Department of Environmental Energy & System Engineering, Kyonggi University;
실험실 규모 Cometabolic Air Sparging 공정 적용 특성 평가 : 토양 내 활성미생물 별 MTBE 분해특성
안상우;이시진;장순웅;
한양대학교 건설환경공학과;경기대학교 환경에너지시스템공학과;경기대학교 환경에너지시스템공학과;
References
1. 안상우, Development and Application of Cometabolic Air Sparging Systems for Gasoline Contaminated Groundwater, 경기대학교 석사학위논문, 2006
3. 장순웅, 조수형, 권수열, 박기호, 이시진, 2004, 2-D공기주입법 실험에 의한 디젤오염지하수 정화연구, 한국폐기물학회, 추계학술연구회발표논문집.
4. 조수형, 2004, Lab-scale biosparging study to remediate diesel contaminated soil and groundwater: the effect of air injection rate and pattern, 경기대학교 석사학위 논문.
5. Johnston, C.D., Rayner, J.L., Patterson, B.M., and Davis, GB., 1998, Volatilization and biodegradation during air sparging of dissolved BTEX-contaminated groudwater, .J. of Contaminant hydrology, 33, 377-404.
6. Kirtland, B.C. and Aelion, C.M., 2000, Petroleum mass removal from low permeability sediment using air sparging/soil vapor extraction: impact of continuous or pulsed operation, J. of Contaminant Hydrology, 41, 367-383.
7. Steffan, R.J., McClay, K., Vainberg, S., Condee, C.W., and Zhang, D., 1997, Biodegradation of the gasoline oxygenates methyl tert-butyl ether, ethyl tert-butyl ether, and tert-amyl methyl ether by propane-oxidizing bacteria. Applied and Environmental Microbiology, 63, 4216-4222.
8. Tsai, Y.,J., 2007, Air flow paths and porosity/permeability change in a saturated zone during in situ air sparging, J. of Hazardous Materials, 142, 315-323.