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[해외논문] Application of stable isotopes and dissolved ions for monitoring landfill leachate contamination

Environmental geochemistry and health, v.42 no.5, 2020년, pp.1387 - 1399  

Lee, Kwang-Sik ,  Ko, Kyung-Seok ,  Kim, Eul Young

초록이 없습니다.

참고문헌 (37)

  1. CAJ Appelo 2005 Geochemistry, groundwater and pollution 2 Appelo, C. A. J., & Postma, D. (2005). Geochemistry, groundwater and pollution (2nd ed.). Rotterdam: AA Balkema Publishers. 

  2. Journal of Hydrology EA Atekwana 205 3-4 265 1998 10.1016/S0022-1694(98)00080-8 Atekwana, E. A., & Krishnamurthy, R. V. (1998). Seasonal variations of dissolved inorganic carbon and 13C of surface waters: applications of a modified gas evolution technique. Journal of Hydrology,205(3-4), 265-278. 

  3. Hydrological Processes EA Atekwana 18 1915 2004 10.1002/hyp.1457 Atekwana, E. A., & Krishnamurthy, R. V. (2004). Investigating landfill-impacted groundwater seepage into headwater streams using stable carbon isotopes. Hydrological Processes,18, 1915-1926. 

  4. BMC (2002). Report on environmental scrutiny of the Seokdae landfill. Busan Metropolitan City. 

  5. Quarterly Journal of Engineering Geology and Hydrogeology SR Buss 37 347 2004 10.1144/1470-9236/04-005 Buss, S. R., Herbert, A. W., Morgan, P., Thornton, S. F., & Smith, W. N. (2004). A review of ammonium attenuation in soil and groundwater. Quarterly Journal of Engineering Geology and Hydrogeology,37, 347-359. 

  6. Journal of Environmental Radioactivity SS Castañeda 110 30 2012 10.1016/j.jenvrad.2012.01.022 Castañeda, S. S., Sucgang, R. J., Almoneda, R. V., Mendoza, N. D. S., & Davis, C. R. C. (2012). Environmental isotopes and major ions for tracing leachate contamination from a municipal landfill in Metro Manila, Philippines. Journal of Environmental Radioactivity,110, 30-37. 

  7. Environmental Science & Technology ESK Chian 11 158 1977 10.1021/es60125a003 Chian, E. S. K., & DeWalle, F. B. (1977). Characterization of soluble organic matter in leachate. Environmental Science & Technology,11, 158-163. 

  8. Ground Water Monitoring and Remediation TH Christensen 20 1 69 2000 10.1111/j.1745-6592.2000.tb00253.x Christensen, T. H., Bjerg, P. L., & Kjeldsen, P. (2000). Natural attenuation: a feasible approach to remediation of groundwater pollution at landfills? Ground Water Monitoring and Remediation,20(1), 69-77. 

  9. Applied Geochemistry Thomas H Christensen 16 7-8 659 2001 10.1016/S0883-2927(00)00082-2 Christensen, T. H., Kjeldsen, P., Bjerg, P. L., Jensen, D. L., Christensen, J. B., Baun, A.,. et al. (2001). Biogeochemistry of landfill plumes. Applied Geochemistry, 16 659-718. 

  10. ID Clark 1997 Environmental isotopes in hydrogeology Clark, I. D., & Fritz, P. (1997). Environmental isotopes in hydrogeology. New York: Lewis Publishers. 

  11. . Ground Water IM Cozzarelli 49 5 663 2011 10.1111/j.1745-6584.2010.00792.x Cozzarelli, I. M., Böhlke, J. K., Masoner, J., Breit, G. N., Lorah, M. M., Tuttle, M. L. W., et al. (2011). Biogeochemical evolution of a landfill leachate plume, Norman Oklahoma. . Ground Water,49(5), 663-687. 

  12. Tellus W Dansgaard 16 4 436 1964 10.3402/tellusa.v16i4.8993 Dansgaard, W. (1964). Stable isotopes in precipitation. Tellus,16(4), 436-468. 

  13. Ground Water KC Hackley 34 5 827 1996 10.1111/j.1745-6584.1996.tb02077.x Hackley, K. C., Liu, C. L., & Coleman, D. D. (1996). Environmental isotope characteristics of landfill leachates and gases. Ground Water,34(5), 827-836. 

  14. Applied Geochemistry KC Hackley 14 119 1999 10.1016/S0883-2927(98)00036-5 Hackley, K. C., Liu, C. L., & Trainor, D. (1999). Isotopic identification of the source of methane in subsurface sediments of an area surrounded by waste disposal facilities. Applied Geochemistry,14, 119-131. 

  15. Current Opinion in Biotechnology. PB Hatzinger 24 542 2013 10.1016/j.copbio.2012.11.010 Hatzinger, P. B., Böhlke, J. K., & Sturchio, N. C. (2013). Application of stable isotope ratio analysis for biodegradation monitoring in groundwater. Current Opinion in Biotechnology.,24, 542-549. 

  16. Applied Geochemistry THE Heaton 20 933 2005 10.1016/j.apgeochem.2004.12.004 Heaton, T. H. E., Trick, J. K., & Williams, G. M. (2005). Isotope and dissolved gas evidence for nitrogen attenuation in landfill leachate dispersing into a chalk aquifer. Applied Geochemistry,20, 933-945. 

  17. Journal of Petrological Society of Korea JS Kim 2 4 156 1993 Kim, J. S., & Yun, S. H. (1993). Petrology of the Cretaceous volcanic rocks in Pusan area, Korea. Journal of Petrological Society of Korea,2(4), 156-166. (in Korean with English abstract). 

  18. Journal of Mineralogical Society of Korea ES Kim 14 58 2001 Kim, E. S., Hwang, J. Y., Kim, J. S., Hamm, S. Y., & Kim, J. K. (2001). Mineralogy and chemical composition of soils with relation to the type of parent rocks in the northern Pusan area. Journal of Mineralogical Society of Korea,14, 58-72. (in Korean with English abstract). 

  19. Climate Research KS Lee 23 137 2003 10.3354/cr023137 Lee, K. S., Grundstein, A. J., Wenner, D. B., Choi, M. S., Woo, N. C., & Lee, D. H. (2003). Climatic controls on the stable isotopic composition of precipitation in Northeast Asia. Climate Research,23, 137-148. 

  20. Levine, A. D., Harwood, V. J., Cardoso, A. J., Rhea, L. R., Nayak, B. S., Dodge, B. M., Decker, M. L., Dzama, G., Jones, L., & Haller, E. (2005). Assessment of biogeochemical deposits in landfill leachate drainage systems. Florida Center for Solid and Hazardous Waste Management, Report #033206-05. 

  21. Journal of Contaminant Hydrology MM Lorah 105 3-4 99 2009 10.1016/j.jconhyd.2008.11.008 Lorah, M. M., Cozzarelli, I. M., & Böhlke, J. K. (2009). Biogeochemistry at a wetland sediment-alluvial aquifer interface in a landfill leachate plume. Journal of Contaminant Hydrology,105(3-4), 99-117. 

  22. Mineralogical Magazine DAC Manning 65 5 603 2001 10.1180/002646101317018424 Manning, D. A. C. (2001). Calcite precipitation in landfills: an essential product of waste stabilization. Mineralogical Magazine,65(5), 603-610. 

  23. 10.2478/v10004-007-0015-5 Miljević, N., & Goloboćanin, D. (2007). Potential use of environmental isotopes in pollutant migration studies. In Environmental Isotopes in Pollutant Studies. Arh Hig Rada Toksikol. 

  24. Science of the Total Environment P Negrel 578 495 2017 10.1016/j.scitotenv.2016.10.214 Negrel, P., Ollivier, P., Flehoc, C., & Hube, D. (2017). An innovative application of stable isotopes (δ2H and δ18O) for tracing pollutant plumes in groundwater. Science of the Total Environment,578, 495-501. 

  25. Environment International JC North 30 5 631 2004 10.1016/j.envint.2003.12.006 North, J. C., Frew, R. D., & Peake, B. M. (2004). The use of carbon and nitrogen isotope ratios to identify landfill leachate contamination: Green Island Landfill Dunedin, New Zealand. Environment International,30(5), 631-637. 

  26. Journal of Geochemical Exploration JC North 88 49 2006 10.1016/j.gexplo.2005.08.003 North, J. C., Frew, R. D., & Hale, R. V. (2006). Can stable isotopes be used to monitor landfill leachate impact on surface waters? Journal of Geochemical Exploration,88, 49-53. 

  27. Parkhurst, D. L., & Appelo, C. A. J. (1999). User’s guide to PHREEQC (version 2)-a computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. U.S. Geochemical Survey Water-Resources Investigations Report 99-4259. 

  28. Waste Management D Porowska 39 216 2015 10.1016/j.wasman.2015.01.044 Porowska, D. (2015). Determination of the origin of dissolved inorganic carbon in groundwater around a reclaimed landfill in Otwock using stable carbon isotopes. Waste Management,39, 216-225. 

  29. Journal of Contaminant Hydrology MA Scholl 86 3-4 239 2006 10.1016/j.jconhyd.2006.03.005 Scholl, M. A., Cozzarelli, I. M., & Christensen, S. C. (2006). Recharge processes drive sulfate reduction in an alluvial aquifer contaminated with landfill leachate. Journal of Contaminant Hydrology,86(3-4), 239-261. 

  30. Current Science N Shivaraman 84 12 1507 2003 Shivaraman, N., & Shivaraman, G. (2003). Anammox-a novel microbial process for ammonium removal. Current Science,84(12), 1507-1508. 

  31. Environmental Monitoring and Assessment UK Singh 141 1-3 309 2008 10.1007/s10661-007-9897-6 Singh, U. K., Kumar, M., Chauhan, R., Jha, P. L., Ramanathan, A. L., & Subramanian, V. (2008). Assessment of the impact of landfill on groundwater quality: a case study of the Pirana site in western India. Environmental Monitoring and Assessment,141(1-3), 309-321. 

  32. Son, C. M., Lee, S. M., Kim, Y. K., Kim, S. W., & Kim, H. S. (1978). Explanatory text of the geological map of Dongrae and Weolnae sheets. Korea Research Institute of Geoscience and Mineral Resources. 

  33. Journal of Environmental Engineering T Tokutomi 137 2 146 2011 10.1061/(ASCE)EE.1943-7870.0000303 Tokutomi, T., Yamauchi, H., Nishimura, S., Yoda, M., & Abma, W. (2011). Application of the nitrification and anammox process into inorganic nitrogenous wastewater from semiconductor factory. Journal of Environmental Engineering,137(2), 146-154. 

  34. Journal of Contaminant Hydrology BM van Breukelen 65 245 2003 10.1016/S0169-7722(03)00003-2 van Breukelen, B. M., Rölling, W. F. M., Groen, J., Griffioen, J., & van Verseveld, H. W. (2003). Biogeochemistry and isotope geochemistry of a landfill plume. Journal of Contaminant Hydrology,65, 245-268. 

  35. 10.1016/0016-7037(86)90346-7 Whiticar, M. J., Faber, E., & Schoell, M. (1986). Biogenic methane formation in marine and freshwater environments: CO2 reduction vs. acetate formation-Isotope evidence. Geochimica et Cosmochimica Acta, 50(5), 693-709. 

  36. Waste Management B Wimmer 33 10 2083 2013 10.1016/j.wasman.2013.02.017 Wimmer, B., Hrad, M., Huber-Humer, M., Watzinger, A., Wyhlidal, S., & Reichenauer, T. G. (2013). Stable isotope signatures for characterising the biological stability of landfilled municipal solid waste. Waste Management,33(10), 2083-2090. 

  37. Rep. Busan Inst. Health & Environ SJ You 13 90 2003 You, S. J., & Kim, K. S. (2003). A study on the characteristics of groundwater quality in Busan. Rep. Busan Inst. Health & Environ,13, 90-136. (in Korean). 

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