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The Evaluation of Petroleum Contamination in Heterogeneous Media Using Partitioning Tracer Method

  • 김은협 (서울대학교 건설환경공학부) ;
  • 이성수 (서울대학교 건설환경공학부) ;
  • 박준범 (서울대학교 건설환경공학부)
  • Kim, Eun-Hyup (Dept. of Civil and Environmental Engineering, Seoul National Univ.) ;
  • Rhee, Sung-Su (Dept. of Civil and Environmental Engineering, Seoul National Univ.) ;
  • Park, Jun-Boum (Dept. of Civil and Environmental Engineering, Seoul National Univ.)
  • 발행 : 2009.09.25

초록

For the remediation of the subsurface contaminated by nonaqueous phase liquids(NAPLs), it is important to characterize the NAPL zone properly. Conventional characterization methods provide data at discrete points. To overcome the weak points of conventional characterization methods, the partitioning tracer method has been developed and studied. The average saturation of NAPL($S_n$), which is the representative and continuous saturation value within contaminated site, can be calculated by comparing the transport of the partitioning tracers to that of the conservative tracer in the partitioning tracer method. In this study, the application of the partitioning tracer method in heterogeneous media was investigated. To represent the heterogeneous condition of subsurface, a two-dimensional soil box was divided into four layers and each layer contained different sized soils. Soils in the soil box were contaminated by the mixture of kerosene and diesel, and partitioning tracer tests were conducted before and after the contamination using methanol as conservative tracer and 4-methyl-2-pentanol, 2-ethyl-1-butanol, and hexanol as partitioning tracers. The response curves of partitioning tracers from contaminated soils were separated and retarded in comparison with those from non-contaminated soils. The contamination of soils by NAPLs, therefore, can be detected by partitioning tracer method considering these retardations of tracers. From our experiment condition, the average saturation of NAPLs calculated by partitioning tracer method using the methanol as conservative tracer and hexanol as partitioning tracer showed the highest accuracy, though all results were underestimated. Further studies, therefore, were needed for improving the accuracy using the partitioning tracer test in heterogeneous media.

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