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Mercury mobility and bioavailability in soil from contaminated area  |
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| 2 |
Brady, N.C. and Weil, R.R., 2014, Elements of the Nature and Properties of Soils, Pearson Education Limited. |
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| 3 |
A review of the distribution of particulate trace elements in urban terrestrial environments and its application to considerations of risk  |
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| 4 |
Mercury accumulation and speciation in plants and soils from abandoned cinnabar mines  |
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Gwak, B.H. and Yoon, K.E., 2011, Plant Physiology, Hyangmunsa. |
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Jung, M.C., Kim, N.K,, and Kim, H.K., 2009, Evalution of environmental contamination and chemical speciation of mercury in tailings and soils from abandoned metal mines in Korea, J. Korean Society for Geosystem, 46(2), 228-238. |
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Kim, M.S., Min, H.G., Lee, B.J., Chang, S.I., Kim, J.G., Koo, N.I., Park, J.S., and Bak, G.I., 2014, The applicability of the acid mine drainage sludge in the heavy metal stabilization in Soils, Korean J Environ Agric., 33(2), 78-85. |
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Kim, P.R., Kim, D.Y., and Han, Y.J., 2019, A review of the longterm trend and spatial distribution of soil mercury concentration in south Korea, J. Korean Soc. Environ. Eng., 41(6), 346-355. |
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| 9 |
Effect of chemical amendments on remediation of potentially toxic trace elements (PTEs) and soil quality improvement in paddy fields.  |
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| 10 |
KME(Korea Ministry of Environment), 2013, Korea Standard Methods for Soil Analysis. |
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| 11 |
KMFDS(Korea Mistry of Food and Drug Safety), 2015, Korean Food Standard Codex. |
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Koh, I.H., 2015, Mine reclamation policies for reduction of water pollution in Japan, J. Mine Reclamation Technology and Policy, 9(1), 83-95. |
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Koh, I.H., Kwon, Y.S., Moon, D.H., and Ji, W.H., 2019, A feasibility assessment for the stabilization of mercury contaminated soil using CMDS (coal mine drainage sludge), Proceedings of Asian Conference on Civil, Material and Environmental Sciences, Hokkaido, Japan, p.399-400. |
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| 14 |
Field assessment of arsenic immobilization in soil amended with iron rich acid mine drainage sludge  |
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| 15 |
KS E 1003:2014, Mine reclamation – Mine area – Selection of stabilization agent and mixing ratio for contaminated soil –Shake-flask batch test method KS I ISO 19730:2009, Soil quality – extraction of trace elements from soil using ammonium nitrate solution. |
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| 16 |
Kwon, H.H. and Nam, G.S., 2017, Mine Reclamation, Dong-Hwa Technology Publishing Co. |
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| 17 |
Waste Management Referees 2006  |
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| 18 |
Mercury mobility at the Carson River Superfund Site, west-central Nevada, USA: Interpretation of mercury speciation data in mill tailings, soils, and sediments  |
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| 19 |
Assessment of waste oyster shells and coal mine drainage sludge for the stabilization of As-, Pb-, and Cu-contaminated soil.  |
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| 20 |
NIAST(National Institute of Agricultural Science and Technology), 2010, Chemical methods for soil analysis. |
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Park, J.D. and Zheng, W., 2012, Human exposure and health effects of inorganic and elemental mercury, J. Prev Med Public Health, 45(6), 344-352. |
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| 22 |
Stabilization of mercury-containing wastes using sulfide  |
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| 23 |
Mercury fractionation in soil and sediment samples using thermo-desorption method  |
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| 24 |
Sources and remediation techniques for mercury contaminated soil  |
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