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정명채,Jung, Myung Chae 대한자원환경지질학회 1994 자원환경지질 Vol.27 No.5
Many researchers have investigated most representative sequential extraction method using various reagents for determining the chemical forms of metals in soils and sediments. In this paper, a newly modified method for sequential extraction scheme based on Tessier's method by Environmental Geochemistry Research, Centre for Environmental Technology, Imperial College, was introduced and examined. In comparison with Tessier's method, originally designed for sediment analysis by Atomic Absorption Spectrophotometry (AAS), the sequential extraction scheme has been developed for the multi-element analysis by Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES). The partitioning of particulate trace elements was classified into five fractions: (i) exchangeable, (ii) bound to carbonates or specially adsorbed, (iii) bound to Fe and Mn oxides, (iv) bound to organic matter and sulphides and (v) residuals. The experimental results of the pilot study for in-house reference material (HRM2) and certified international standard reference material (SRM2711) using the modified method showed not only reasonable precision and accuracy but also acceptable overall recovery rates. In addition, mine dump soils sampled in the Dalsung Cu-W mine, Korea were prepared and sequentially extracted using the method. Most of Cu was bound to organic matter/sulphides and residual fractions. The dominant fraction of soil Pb and Zn in the study area was found in the residuals. The fraction of Cd showed a wide variation between samples and could be found bound to the carbonates or specially adsorbed, oxides, organic fraction and residuals. The recovery rates of Cd, however, were poor due to relatively low Cd concentrations in soils. The heavy metals in these mine dumps appear to be in the more inert forms and should not be readily bioavailable. The soils, however, had very low pH values (average 4.1) and had sandy textures; consequently, rapid infiltration of rainfall may increase leaching of Zn and Cd which were found to be around 5 to 10% of the exchangeable fraction. As a result of the investigation of this study, it has been strongly recommended that these mine waste materials should still be considered a significant contaminant source and will need environmental remediation to prevent pollutants from being released into the environment.
제강슬래그, 우분 및 석회석을 활용한 폐 석탄광의 산성광산배수 처리
정명채,Jung Myung-Chae 한국지하수토양환경학회 2005 지하수토양환경 Vol.10 No.3
중금속과 황산이온의 농도가 높은 산성광산배수(AMD)를 배출하는 강원도 정선군에 위치한 삼척탄좌 정암광업소 유출수를 대상으로 제강 슬래그, 우분 및 석회석 등을 활용하여 처리실험을 수행하였다. Batch test와 적용성 시험 결과, 원수 1 L당 15 g의 제강 슬래그, 15 g의 우분 및 500 g의 석회석이 최적의 기질물질 양으로 조사되었다. 이를 기초로 제강 슬래그, 우분과 석회석으로 충진한 SAPS조, 침전조, 산화조 순서로 구성된 처리시스템을 구성하였다. 총 54일간 시행된 실험결과, 원수에 비해 pH의 상승(3.0에서 8.3)과 더불어 61%의 황산염이온 농도가 저감되었다 (1,042 mg/L에서 409 mg/L). 또한, 초기농도 대비 최종 방류수의 중금속 처리효율은 매우 높은 수준으로써 99.9% 이상의 Al, Fe, Zn과 92.6% Mn이 제거되었다. 즉, 제강 슬래그, 우분 및 석회석을 활용하면 산성광산수의 중화와 금속 침전효과를 얻을 수 있음을 확인하였다. In order to remediate acid mine drainage (AMD) from the Jeongam coal mine, steel mill slag, cow manure and limestone were used. As a result of batch test, the proper amounts for treating 1 L of acid mine water from the mine were determined as 15 g of steel mill slag, 15 g of cow manure and 500 g of limestone. After feasibility test, remediation system was arranged in the order of steel mill slag tank combination of cow manure and limestone, precipitation tank and oxidation tank. During 54 days' operations, the pH values of the treated waters increased from 3.0 to 8.3 and 61 % of sulfate concentration in an initial water was decreased. In addition, the removal efficiencies for metals in the water were nearly 99.9% for Al, Fe, Zn and 92.6% for Mn. Thus, the combination of steel mill slag, cow manure and limestone can be used as neutralization 때d metal removal for acid mine drainage.