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NTIS 바로가기지하수토양환경 = Journal of soil and groundwater environment, v.25 no.2 spec., 2020년, pp.28 - 54
박현지 (고려대학교 지구환경과학과) , 김한석 (고려대학교 지구환경과학과) , 윤성택 (고려대학교 지구환경과학과) , 조호영 (고려대학교 지구환경과학과) , 권만재 (고려대학교 지구환경과학과)
Even though a systematic sampling approach is very crucial in both the general and detailed investigation phases to produce the best conceptual site model for contaminated sites, the concept is not yet established in South Korea. The U.S. Environmental Protection Agency (EPA) issued the 'Strategic S...
이승찬, 김희연, 김효정, 한정호, 김성준, 김종건, 임경재, 2017, 다양한 기저유출 분리 방법을 이용한 4대강 수계의 시간대별(연.계절.월) 기저유출 기여도 분석, Journal of the Korean Society of Agricultural Engineers, 59, 1-11.
IAEA, 2004, Soil sampling for environmental contaminants, International Atomic Energy Agency, IAEA-TECDOC-1415.
ITRC, 2012, Incremental Sampling Methodology, ISM-1, Washington, D.C.
Jung, Y., Shin, Y., Won, N.I., and Lim, K.J., 2016, Web-based BFlow system for the assessment of streamflow characteristics at national level, Water, 8, 384. doi:10.3390/w8090384
Jung, Y.Y., Koh, D.C., Yoon, Y.Y., Kwon, H.I., Heo, J., Ha, K., and Yun, S.T., 2019, Using stable isotopes and tritium to delineate groundwater flow systems and their relationship to streams in the Geum River basin, Korea, Journal of Hydrology, 573, 267-280.
Kim, H.R., Kim, K.H., Yu, S., Moniruzzaman, M.d., Hwang, S.I., Lee G.T., and Yun, S.T., 2019, Better assessment of the distribution of Pb and As in soils in a former smelting area, using ordinary co-kriging and sequential Gaussian co-simulation of portable X-ray fluorescence (PXRF) and ICP-AES data, Geoderma, 341, 26-38.
Kwon, M.J., O'Loughlin, E., Ham, B., Hwang, Y.H., Shim, M., and Lee, S., 2018, Application of an in-situ soil sampler for assessing subsurface biogeochemical dynamics in a diesel-contaminated coastal site during soil flushing operations, Journal of Environmental Management, 206, 938-948.
Kwon, M.J., Yun, S-T., Ham, B., Lee, J-H., Oh, J-S., and Jheong, W-W., 2017, Impacts of leachates from livestock carcass burial and manure heap sites on groundwater geochemistry and microbial community structure, PLoS ONE, 12(8):e0182579.
Moniruzzaman, M., Lee, J.-H., Jung, K.M., Kwon, J.S., Kim, K.-H., and Yun, S.-T., 2018, Lithologic Control of the Hydrochemistry of a Point-Bar Alluvial Aquifer at the Low Reach of the Nakdong River, South Korea: Implications for the Evaluation of Riverbank Filtration Potential, Water, 10, 1763.
Noh, S., Kim, Y., Kim, H. Seok, K., Park, M., Bailon, M.X., and Hong, Y., 2020, The performance of diffusive gradient in thin film probes for the long-term monitoring of trace level total mercury in water, Environ Monit Assess, 192, 66.
Oh, Y.Y., Yun, S.T., Yu, S., and Hamm, S.Y., 2017, The combined use of dynamic factor analysis and wavelet analysis to evaluate latent factors regulating complex groundwater level fluctuations in a riverside alluvial aquifer, Journal of Hydrology, 555, 938-955.
Parker, B.L., Cherry, J.A., and Chapman, S.W., 2012, Discrete fracture network approach for studying contamination in fractured rock, AQUA Mundi, 3, 101-116.
Persaud, E., Levison, J., Pehme, P., Novakowski, K., and Parker, B., 2018, Cross-hole fracture connectivity assessed using hydraulic responses during liner installations in crystalline bedrock boreholes, Journal of Hydrology, 556, 233-246.
Swyngedouw, C., 2018, Chapter 2 - Sampling Methods for Site Characterization, Editor(s): Benedetto De Vivo, Harvey E. Belkin, Annamaria Lima, Environmental Geochemistry (Second Edition), Elsevier, 13-24 (https://doi.org/10.1016/B978-0-444-63763-5.00003-3)
US EPA, 2016. Groundwater High-Resolution Site Characterization Course. CERCLA Education Center (https://clu-in.org/characterization/technologies/hrsc/hrsctraining.cfm)
US EPA, 2018, Strategic sampling approaches technical guide, EPA 542-F-18-005, 2018 (https://semspub.epa.gov/work/HQ/100001800.pdf)
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