All Issue

2025 Vol.62, Issue 3

Research Paper

30 June 2025. pp. 191-202
Abstract
References
1

Aldrich, M.V., Peralta-Videa, J.R., Parsons, J.G., and Gardea-Torresdey, J.L., 2007. Examination of arsenic(III) and (V) uptake by the desert plant species mesquite (Prosopis spp.) using X-ray absorption spectroscopy, Science of The Total Environment, 379, p.249-255

10.1016/j.scitotenv.2006.08.05317055035
2

Baek, K.T., 2021. KR, Patent No. 10-2271629.

3

Beiyuan, J., Li, J.S., Tsang, Daniel C.W., Wang, L., Poon, C.S., Li, X.D., and Fendorf, S., 2017. Fate of arsenic before and after chemical-enhanced washing of and arsenic-containing soil in Hong Kong, Science of The Total Environment, 599-600, p.679-688.

10.1016/j.scitotenv.2017.04.20828494293
4

Caruso, J.A., Heitkemper, D.T., and Hymer, B., 2001. An evaluation of extraction techniques for arsenic species from freeze-dried apple samples, The Analyst, 126(2), p.136-140.

10.1039/b009825f11235091
5

Chang, Y.P., Wu, S.J., Lin, M.S., Chiang, C.Y., and Huang, G.G., 2021. Ionic-strength and pH dependent reactivities of ascorbic acid toward ozone in aqueous micro-droplets studied using aerosol optical tweezers, Physical Chemisitry Chemical Physics, 23, p.10108-10117.

10.1039/D0CP06493A33876156
6

Chappell, W.R., Beck, B.D., Brown, K.G., Chaney, R., Cothern, R., Irgolic, K.J., North, D.W., Thornton, I., and Tsongasm, T.A., 1997. Inorganic arsenic: a need and an opportunity to improve risk assessment, Environmental Health Perspectives, 105(10), p.1,060-1,067.

10.2307/34338479349827PMC1470381
7

Choi, S.I., 2006. KR, Patent No. 2006-0078779.

8

Guo, J.X., Hu, L., Yand, P.Z., Tanabe, K., Miyatalrem M., and Chen, Y., 2007. Chronic arsenic poisoning in drinking water in Inner Mongolia and its associated health effects, Journal of Environmental Science and Health, 42(12), p.1,853-1,858.

10.1080/1093452070156691817952786
9

Han, S.H., 2021. Evaluation on the Present Status and Recycling Possibility of Clean-up Soils in Korea, MS Thesis, Sejong University, Korea, p.1-53.

10

Huang, Y.C. and Wang, M.K., 2001. Effects of organic acids on the release of arsenic from soils and sediments, Water, Air and Soil Pollution, 127(1-4), p.1-10.

11

Im, J.W., Yang, K., Jho, E.H., and Nam, K.P., 2015. Effect of different soil washing solutions on bioavailability of residual arsenic in soils and soil properties, Chemosphere, 138, p.253-258.

10.1016/j.chemosphere.2015.06.00426086811
12

International Agency for Research on Cancer (IARC), 2012. Arsenic, Meteals, Fibres, and Dusts, Vol. 100 C. Lyon, France p.41-93.

13

Jeong, S.B., Hyun, J.Y., Kim, H.S., Chae, Y.B., and Lee, U.J., 2006. Reduction and detoxification of the metallic mine tailing by mineral processing technique, Journal of The Korean Society of Mineral and Energy Resources Engineers, 43(5), p.478-485.

14

Jho, E.H., Im, J.W., Yang, K., Kim, Y.J., and Nam, K.P., 2015. Changes in soil toxicity by phosphate-aided soil washing: Effect of soil characteristics, chemical forms of arsenic, and cations in washing solutions, Chemosphere, 119, p.1,399-1,405.

10.1016/j.chemosphere.2014.10.03825482580
15

Jung, B., Safan, A., Duan, Y., Kaushik, V., Batchelor, B., and Abdel-Wahab, A., 2018. Arsenic mobilization and sequenstration by dithionite treatment in flooded soil, Chemosphere, 211, p.768-776.

16

Kim, J.G., 2017. KR, Patent No. 2017-0042416.

17

Kim, J.H., 2014. Study of physical and physicochemical processing on the removal of As from tailing, MS Thesis, Chosusn University, Korea, 41p.

18

Kim, J.Y., 2011. Characteristics of thermal desorption (TD) and subcritical water extraction (SWE) for As-contaminated soil, PhD Dissertation, Hanyang University, Korea, 199p.

19

Kim, Y.R., 2018. Comparison on various remediation methods for Arsenic contaminated soils around a smelter, MS Thesis, Sejong University, Korea, 68p.

20

Ko, I.W., Lee, C.H., Lee, K.P., and Kim, K.W., 2004, Remediation of soils contaminated with Arsenic and heavy metals by soil washing, Korean Society of Soil And Groundwater Environment, 9(4), p.52-61.

21

Korea Environmental Industry & Technology Institute (KEITI), 2016. Fractionation and Mineralogy-Based Washing of Heavy Metals from contaminated Soils, Seoul, Korea, 170p.

22

Korea Ministry of Environment (KMOE), 2012. Heavy-metal-contaminated soil and emission gas Treatment technology Development through Thermal Desorption with Low-temperature Extraction, Sejong, Korea, 205p.

23

Korea Ministry of Environment (KMOE), 2013. Survey Results on Contamination of Soil in Monitoring Network, No. 11-1480000-000669-10, Sejong, Korea, 250p.

24

Korea Ministry of Environment (KMOE), 2022. Standard Soil Contamination Test Methods, Notification No. 2022-38, Sejong, Korea, 46p.

25

Kwon, J.Y. and Hong, Y.S., 2023. Chronic exposure to arsenic and the effects on human health, Journal of Environmental Health Sciences, 49(5), p.237-246.

10.5668/JEHS.2023.49.5.237
26

Lee, J.C., Kim, E.J., Kim, H.W., and Back, K., 2016. Oxalate-based remediation of arsenic bound to amorphous Fe and Al hydrous oxides in soil, Geoderma, 270, p.76-82.

10.1016/j.geoderma.2015.09.015
27

Lee, K.W., Kim, K.W., and Kim, S.O., 2009. Remediation of arsenic contaminated soils using a hybrid technology integration bioleaching and electrokinetics, The Journal of Korean Society of Soil and Groundwater Environment, 14(2), p.33-44.

28

Lee, S.W., Lee, W.C., Lee, S.H., and Kim, S.O., 2020. Changes of soil properties through the remediation processes and techniques for the restoration of remediated soils, Economic and Environmental Geology, 53(4), p.441-477.

29

Lin, K.Y., Chen, Y.M., Chen, L.F., Wang, M.K., and Liu, C.C., 2017, Remediation of arsenic-contaminated soil using alkaline extractable organic carbon solution prepared from wine-processing waste sludege, Soil and Sediment Contamination: An International Journal, 26(6), p.569-583.

10.1080/15320383.2017.1364221
30

Luong, J.H.T., Majid, E., and Male, K.B., 2007. Analytical tools for monitoring arsenic in the environment, The Open Analytical Chemistry Journal, 1(1), p.7-14.

10.2174/187406500701017005
31

Oberteufferm, J.A., 1974. Magnetic separation: a review of principles, devices, and applications, IEEE Transactions on Magnetics, 10(2), p.223-238.

10.1109/TMAG.1974.1058315
32

Park, C.O., 2015. Separation technology for heavy metals by mineralogical and physicochemical properties of agricultural soils in the vicinity of abandoned mine sites, PhD Dissertation, University of Seoul, Korea, 149p.

33

Park, G.Y., Kim, W.S., Kim, D.H., Yang, J.S., and Baek, K.T., 2013. Evaluation of electrolyte and electrode spacing for application of electrokinetic remediation, The Journal of Korean Society of Soil and Groundwater Environment, 18(1), p.6-15.

10.7857/JSGE.2013.18.1.006
34

Parviainen, A., Isosaari, P., Loukola-Ruskeeniemi, K., Nieto, J.M., and Gervilla, F., 2012. Occurrence and mobility of As in the Ylöjärvi Cu-W-As mine tailings, Journal of Geochemical Exploration, 114, p.36-45.

10.1016/j.gexplo.2011.12.002
35

Public Data Portal. 2025.04.12., https://www.data.go.kr/data/15051962/fileData.do.

36

Qiu, R., Zou, Z., Zhao, Z,M., Zhang, W., Zhang, T., Dong, H., and Wei, X., 2010. Removal of trace and major metals by soil washing with Na2EDTA and oxalate, Journal of Soils and Sediments, 10, p.45-53.

10.1007/s11368-009-0083-z
37

Smedley, P.L. and Kinniburgh, D.G., 2002. A review of the source, behaviour and distribution of arsenic in natural waters, Applied Geochemistry, 17(5), p.517-568.

10.1016/S0883-2927(02)00018-5
38

Tchounwou, P.B., Patlolla, A.K., and Centeno, J.A., 2003. Carcinogenic and systemic health effects associated with arsenic exposure a critical review, Toxicol Pathol, 31(6). p.575-588.

10.1080/0192623039024200714585726
39

Wang, Y., Ma, F., Zhang, Q., Peng, C., Wu, B., Li, F., and Gu, Q., 2017. An evaluation of different soil washing solutions for remediating arsenic-contaminated soils, Chemosphere, 173, p.368-372.

10.1016/j.chemosphere.2017.01.06828129613
40

Wei, M., Chen, J., and Wang, X., 2016. Removal of arsenic and cadmium with sequential soil washing techniques using Na2EDTA, oxalic and phosphoric acid: Optimization conditions, removal effectiveness and ecological risks, Chemosphere, 156, p.252-261.

10.1016/j.chemosphere.2016.04.10627179243
41

Wenzel, W.W., Kirchbaurner, N., Prohaska, T., Stingeder, G., Lombi, E., and Adriano, D.C., 2001. Arsenic fractionation in soils using an improved sequential extraction procedure, Analytica Chimica Acta, 436(2), p.309-323.

10.1016/S0003-2670(01)00924-2
42

Wills, B.A. and Finch, J., 2016. Wills' mineral processing technology: An introduction to the practical aspects of ore treatment and mineral recovery, 8th ed, Butterworth-Heinemann, 2016, p.1-152.

10.1016/B978-0-08-097053-0.00001-7PMC4809314
43

Zhao, R., Li, X., Zhang, Z., and Zhao, G., 2016. KH2PO4-aided soil washing for removing arsenic from water-stable soil aggregates collected in southern China, Environmental Engineering Research, 21(3), p.1-9.

10.4491/eer.2016.039
Information
  • Publisher :The Korean Society of Mineral and Energy Resources Engineers
  • Publisher(Ko) :한국자원공학회
  • Journal Title :Journal of the Korean Society of Mineral and Energy Resources Engineers
  • Journal Title(Ko) :한국자원공학회지
  • Volume : 62
  • No :3
  • Pages :191-202
  • Received Date : 2025-04-23
  • Revised Date : 2025-05-16
  • Accepted Date : 2025-05-16