• Sensitivity Analysis of Hydrodynamic and Reaction Parameters in Gasoline Transport Conceptual Aquifer Model Based on Hydrogeological Characteristics of Korea
  • Jin Chul Joo1·Dong Hwi Lee1·Hee Sun Moon2,*·Sun Woo Chang3·Soo-Hyoung Lee·Eunhee Lee2·Kyoungphile Nam4

  • 1Department of Civil and Environmental Engineering, Hanbat National University
    2Groundwater Research Center, Korea Institute of Geoscience and Mineral Resources
    3Department of Land, Water and Environment Research, Korea Institute of Civil Engineering and Building Technology
    4Department of Civil and Environmental Engineering, Seoul National University

  • 국내 대수층 특성을 반영한 포화대 내 유류오염물질 거동 개념 모델에서 수리동역학적 및 반응 입력인자 민감도 평가
  • 주진철1·이동휘1·문희선2,*·장선우3·이수형2·이은희2·남경필4

  • 1한밭대학교 건설환경공학과
    2한국지질자원연구원 지질환경연구본부 지하수연구센터
    3한국건설기술연구원 국토보전연구본부
    4서울대학교 건설환경공학부

References
  • 1. Atlabachew, A., Shu, L., Wu, P., Zhang, Y., and Xu, Y., 2013, Numerical modeling of solute transport in a sand tank physical model under varying hydraulic gradient and hydrological stresses. Hydrogeol. J., 26(6), 2089-2113.
  •  
  • 2. Bailey, R.T., Morway, E.D., Niswonger, R.G., and Gates, T.K., 2013, Modeling variably saturated multispecies reactive groundwater solute transport with MODFLOW-UZF and RT3D, Ground water, 51(5), 752-716.
  •  
  • 3. Baveye, P. and Valocchi, A., 1989, An evaluation of mathematical models of the transport of biologically reacting solutes in saturated soils and aquifers, Water Resour. Res., 25(6), 1413-1421.
  •  
  • 4. Chang, S.W., Moon, H.S., Lee, E.H., Joo, J.C., and Nam, K.P., 2019, Numerical study of contaminant pathway for risk assessment in subsurface of contaminated sites, J. Soil Groundw. Environ., 24(3), 13-23.
  •  
  • 5. Chen, Y.M., Abriola, L.M., Alvarez, P.J.J., Anid, P.J., and Vogel, T.M., 1992, Modeling transport and biodegradation of benzene and toluene in sandy aquifer material: Comparisons with experimental measurements, Water Resour. Res., 28(7), 1833-1847.
  •  
  • 6. Clement, T.P., 1999, A Modular Computer Code for Simulating Reactive multi-species Transport in 3-Dimensional Groundwater Systems, Rich land, PNNL-11720.
  •  
  • 7. Clement, T.P., Sun, Y., Hooker, B.S., and Petersen, J.N., 1998, Modeling multispecies reactive transport in ground water, Ground Water Monit. Remed., 18(2), 79-92.
  •  
  • 8. Delle Site, A., 2001, Factors affecting sorption of organic compounds in natural sorbent/water systems and sorption coefficients for selected pollutants, A review, J. Phys. Chem. Ref. Data, 30(1), 187-439.
  •  
  • 9. Essaid, H.I., Bekins, B.A., and Cozzarelli, I.M., 2015, Organic contaminant transport and fate in the subsurface: Evolution of knowledge and understanding, Water Resour. Res., 51(7), 4861-4902.
  •  
  • 10. Fetter, C.W., 2001. Contaminant hydrogeology. Prentice Hall Inc., Upper Saddle River.
  •  
  • 11. Han, J.S., 2015, Hydrogeology and groundwater modeling, Publishing Co.Naeha, Korea. (In Korean)
  •  
  • 12. Hamby, D.M., 1994, A review of techniques for parameter sensitivity analysis of environmental models, Environ Monit Assess, 32(2), 135-154.
  •  
  • 13. Joo, J.C., Shackelford, C.D., and Reardon K.F., 2008, Sorption of nonpolar neutral organic compounds to humic acid-coasted sands: Contributions of organic and mineral components, Chemosphere, 70(7), 1290-1297.
  •  
  • 14. Joo, J.C., Shackelford, C.D., and Reardon, K.F., 2011, Sorption of neutral organic compounds in mixtures to mineral surfaces and humic acid-mineral complexes, J. Hazard. Toxic Radioact. Waste., 15(3), 188-198.
  •  
  • 15. Joo, J.C., Shackelford C.D., and Reardon, K.F., 2012, Lumping analysis for sorption of neutral organic compounds in mixtures to simulated aquifer sorbents, J. Environ. Eng., 138(5), 552-561.
  •  
  • 16. Kim, M.J. and Park, J.W., 2007, Contaminant fate and transport modeling for risk assessment, J. Soil Groundw. Environ., 12(1), 44-52.
  •  
  • 17. Lapworth, D.J., Baran, N., Stuart, M.E., and Ward, R.S., 2012, Emerging organic contaminants in groundwater: A review of sources, fate and occurrence, Environ. Pollut., 163, 287-303.
  •  
  • 18. Macini, S.A., Ulrich, A.C., Lacrampe-Couloume, G., Sleep, B., Edwards, E.A., and Lollar, B.S., 2003, Carbon and hydrogen isotopic fractionation during anaerobic biodegradation of benzene, Appl. Environ. Microbiol., 69(1), 191-198.
  •  
  • 19. Mackay, D.M., Roberts, P.V., and Cherry, J.A., 1985, Transport of organic contaminants in groundwater, Environ. Sci. Technol., 19(5), 384-392.
  •  
  • 20. McDonald, M.G. and Harbaugh, A.W., 1988, A Modular Three dimensional Finite-difference Ground-water flow model: Techniques of Water-Resources Investigations of the U.S. Geological Survey, Book 6, Chapter A1.
  •  
  • 21. Na, H.N., Koo, M.H., Cha, J.H., and Kim, Y.J., 2007, Sensitivity analysis of groundwater model predictions associated with uncer-tainty of boundary conditions: A case study, J. Soil Groundw. Environ., 12(3), 53-65.
  •  
  • 22. Oh, Y.S., Shareefdeen, Z., Baltzis, B.C., and Bartha, R., 1994, Interactions between benzene, toluene, and p-Xylene (BTX) during their biodegradation, Biotechnol. Bioeng., 44(4), 533-538.
  •  
  • 23. Park, D.H., Koo, M.H., and Kim, Y.C., 2015, Hydro-thermal numerical simulation for an artificial recharge test in a fractured rock aquifer, J. Soil Groundw. Environ., 20(1), 65-75.
  •  
  • 24. Site, A.D., 2000, Factors affecting sorption of organic compounds in natural sorbent/water systems and sorption coefficients for se-lected pollutants. A Review, J. Phys. Chem. Ref. Data, 30(1), 187-439.
  •  
  • 25. Song, X., Zhang, J., Zhan, C., Xuan, Y., and Ye, M., and Xu, C., 2015, Global sensitivity analysis in hydrological modeling: Review of concepts, methods, theoretical framework, and applications, J. Hydrol., 523, 739-757.
  •  
  • 26. Trigueros, D.E.G., Modenes, A.N., Kroumov, A.D., and Espinoza-Quinones, F.R., 2010, Modeling of biodegradation process of BTEX compounds: Kinetic parameters estimation by using particle swarm global optimizer, Process Biochem., 45(8), 1355-1361.
  •  
  • 27. USEPA, 1996, Soil Screening Guidance: Technical Background Document, Second edition, Office of solid waste and emergency response, Washington, DC. EPA/540/R95/128.
  •  
  • 28. ASTM, 1999, RBCA Fate and Transport Models: Compendium and Selection Guidance, West Conshohocken, PA.
  •  
  • 29. Zheng, C. and Gordon, D.B., 2002, Applied Contaminant Transport Modeling. John Wiley & Sons.
  •  

This Article

  • 2020; 25(1): 37-52

    Published on Mar 31, 2020

  • 10.7857/JSGE.2020.25.1.037
  • Received on Feb 13, 2020
  • Revised on Mar 2, 2020
  • Accepted on Mar 13, 2020

Correspondence to

  • Hee Sun Moon
  • Groundwater Research Center, Korea Institute of Geoscience and Mineral Resources 

  • E-mail: hmoon@kigam.re.kr