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Remediation of TCE-Contaminated Groundwater in a Sandy Aquifer Using Pulsed Air Sparging: Laboratory and Numerical Studies
Authors:Hun-Mi Kim  Yunjung Hyun  Kang-Kun Lee
Affiliation:1Graduate Student, School of Earth and Environmental Sciences, Seoul National Univ., Seoul, 151-747, South Korea. E-mail: hmkim@kei.re.kr
2Postdoctoral Associate, School of Earth and Environmental Sciences (BK21 SEES), Seoul National Univ., Seoul, 151-747, South Korea (corresponding author). E-mail: yjhyun@snu.ac.kr
3Professor, School of Earth and Environmental Sciences, Seoul National Univ., Seoul, 151-747, South Korea. E-mail: kklee@snu.ac.kr
Abstract:The objective of this study was to investigate, through laboratory and numerical investigations, the effectiveness of a pulsed air sparging system for remediation of groundwater contaminated with trichloroethylene (TCE) in a sandy aquifer. In laboratory experiments, air was pulsed into TCE source zone on a daily basis in order to remediate TCE-contaminated groundwater. Most dissolved TCE was removed at the end of experiments although its concentrations fluctuated due to the air pulsing. The measured gaseous phase TCE concentration increased whereas the aqueous phase TCE concentration decreased during air sparging pulses. Experimental data were assessed by using a numerical code STOMP (subsurface transport over multiphases) with some modification based on the TCE dissolution kinetics. The unmeasured residual TCE mass was predicted through numerical simulations. Results show that aqueous concentrations for TCE are still much higher than the maximum contaminant level in spite of successful removal of 95% of residual TCE. It may imply that it would be more appropriate to apply air sparging combined with other remediation technologies such as bioremediation for remediation of TCE-contaminated groundwater.
Keywords:TCE  Water treatment  Ground-water pollution  Aquifers  Remedial action  Numerical models  
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