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지구통계 기법을 활용한 토양 오염범위 산정 및 불확실성 평가Evaluation of Geostatistical Approaches for better Estimation of Polluted Soil Volume with Uncertainty Evaluation

Other Titles
Evaluation of Geostatistical Approaches for better Estimation of Polluted Soil Volume with Uncertainty Evaluation
Authors
김호림김경호윤성택황상일김형돈이군택김영주
Issue Date
2012
Publisher
한국지하수토양환경학회
Keywords
Remediation of polluted soils; Heavy metals; Geostatistical approaches; Estimation of spatial extent and volume of polluted soil; Uncertainty estimation
Citation
지하수토양환경, v.17, no.6, pp.69 - 81
Indexed
KCI
Journal Title
지하수토양환경
Volume
17
Number
6
Start Page
69
End Page
81
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/110263
ISSN
1598-6438
Abstract
Diverse geostatistical tools such as kriging have been used to estimate the volume and spatial coverage of contaminated soil needed for remediation. However, many approaches frequently yield estimation errors, due to inherent geostatistical uncertainties. Such errors may yield over- or under-estimation of the amounts of polluted soils, which cause an overestimation of remediation cost as well as an incomplete clean-up of a contaminated land. Therefore, it is very important to use a better estimation tool considering uncertainties arising from incomplete field investigation (i.e., contamination survey) and mathematical spatial estimation. In the current work, as better estimation tools we propose stochastic simulation approaches which allow the remediation volume to be assessed more accurately along with uncertainty estimation. To test the efficiency of proposed methods, heavy metals (esp., Pb) contaminated soil of a shooting range area was selected. In addition, we suggest a quantitative method to delineate the confident interval of estimated volume (and spatial extent) of polluted soil based on the spatial aspect of uncertainty. The methods proposed in this work can improve a better decision making on soil remediation.
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YUN, Seong Taek
이과대학 (지구환경과학과)
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