참고문헌
- Abernathy, C.O., Y.P. Liu, D. Longfellow, H.V. Aposhian, B. Beck, B. Fowler, R. Goyer, R. Menzer, T. Rossman, C. Thompson, and M. Waalkes. 1999. Arsenic: Health effects, mechanism of action, and research issues. Environ. Health Perspect. 107:593-597. https://doi.org/10.1289/ehp.99107593
- Adriano, D.C. 1986. Trace Elements in the Terrestrial Environment. Spinger Verlag.
- Codex Alimentarius Commission (CAC). 2014. Joint FAO/WHO Food Standards Programme. 37th Session Report.
- Codex Alimentarius Commission (CAC). 2016. Joint FAO/WHO Food Standards Programme. 39th Session Report.
- De Vries, W., M.J. McLaughlin, and J.E. Groenenberg. 2011. Transfer functions for solid-solution partitioning of cadmium for Australian soils. Environ. Pollut. 159:3583-3594. https://doi.org/10.1016/j.envpol.2011.08.006
- Deutsches Institute fur Normung (DIN). 1995. Soil Quality Extraction of Trace Elements with Ammonium Nitrate Solution. DIN 19730. Beuth Verlag, Berlin, Germany.
- Duker, A.A., E.J.M. Carranza, and M. Hale. 2005. Arsenic geochemistry and health. Environ. Int. 31:631-641 https://doi.org/10.1016/j.envint.2004.10.020
- Fitz, W.J., and W.W. Wenzel. 2002. Arsenic transformations in the soil-rhizosphere-plant system: fundamentals and potential application to phytoremediation. J. Biotechnol. 99:259-278. https://doi.org/10.1016/S0168-1656(02)00218-3
- Groenenberg, J.E., P.F.A.M. Romkens, R.N.J. Comans, J. Luster, T. Pampura, L. Shotbolt, E. Tipping, and W. De Vries. 2010. Transfer functions for solid-solution partitioning of cadmium, copper, nickel, lead and zinc in soils: derivation of relationships for free metal ion activities and validation with independent data. Eur. J. Soil Sci. 61:58-73. https://doi.org/10.1111/j.1365-2389.2009.01201.x
- Harvey, C.F., C.H. Swartz, A.B.M. Badruzzaman, N. Keon-Blute, W. Yu, M.A. Ali, J. Jay, R. Beckie, V. Niedan, D. Brabander, P.M. Oates, K.N. Ashfaque, S. Islam, H.F. Hemond and M.F. Ahmed. 2002. Arsenic mobility and groundwater extraction in Bangladesh. Science. 298:1602-1606. https://doi.org/10.1126/science.1076978
- Huang, R.Q., S.F. Gao, W.L. Wang, S. Staunton and G. Wang. 2006. Soil arsenic availability and the transfer of soil arsenic to crops in suburban areas in Fujian Province, Southeast China. Sci. Total Environ. 368:531-541. https://doi.org/10.1016/j.scitotenv.2006.03.013
- Johnson, M.O., H.H.P. Cohly, R.D. Isokpehi, and O.R. Awofolu. 2010. The case for visual analytics of arsenic concentration in food. Int. J. Environ. Res. Public Health. 7(5):1970-1983. https://doi.org/10.3390/ijerph7051970
- Kabata-Pendias, A. and H. Pendias. 1984. Trace Elements in Soils and Plants. CRC Press, Inc.
- Kang, S.S., A.S. Ahn, S.C. Choi, Y.S. Kim, H.J. Kim, M.T. Choi, B.K. Ahn, H.W. Kim, H.K. Kim, J.H. Park, Y.H. Lee, S.H. Yang, J.S.Ryu, Y.S. Jang, M.S. Kim, Y.K. Sonn, C.H. Lee, S.G. Ha, D.B. Lee, and Y.H. Kim. 2012. Status and changes in chemical properties of paddy soil in Korea. Korean J. Soil Sci. Fert. 45(6):968-972. https://doi.org/10.7745/KJSSF.2012.45.6.968
- Kim, J.Y., J.H. Lee, A. Kunhikrishnan, D.W. Kang, M.J. Kim, J.H. Yoo, D.H. Kim, Y.J. Lee, and W.I. Kim. 2012. Transfer factor of heavy metals from agricultural soil to agricultural products. Korean J. Environ. Agric. 31(4):300-307. https://doi.org/10.5338/KJEA.2012.31.4.300
- Kim, K.J. and P.K. Sahoo. 2013. A review of the arsenic concentration in paddy rice from the perspective of geoscience. Geosciences J. 17(1):107-122. https://doi.org/10.1007/s12303-013-0004-4
- Kim, K.R., G. Owens, R. Naidu, and K.H. Kim. 2007. Assessment techniques of heavy metal bioavailability in soil: a critical review. Korean J. Soil Sci. Fert. 40(4):311-325.
- Kim, W.I., J.J. Kim, J.H. Yoo, J.Y. Kim, J.H. Lee, M.K. Paik, R.Y. Kim, and G.J. Im. 2010. Arsenic Fractionation and bioavailability in paddy soils near closed mine in Korea. Korean J. Soil Sci. Fert. 43(6):917-922.
- Kim, W.I., J.J. Kim, J.H. Yoo, J.Y. Kim, J.H. Lee, M.K. Paik, R.Y. Kim, G.J. Im. 2010. Arsenic fractionation and bioavailability in paddy soils near closed mines in Korea. Korean J. Soil Sci. Fert. 43(6):917-922.
- Koh, I.H., S.H. Lee, W.S. Lee, and Y.Y. Chang. 2013. Assessment on the transition of arsenic and heavy metal from soil to plant according to stabilization process using limestone and steelmaking slag. J. Soil Groundwater Env.18(7):63-72. https://doi.org/10.7857/JSGE.2013.18.7.063
- Kunhikrishnan, A., W.R. Go, J.H. Park, K.R. Kim, H.S. Kim, K.H. Kim, W.I. Kim, and N.J. Cho. 2015. Heavy metal(loid) levels in paddy soils and brown rice in Korea. Korean J. Soil Sci. Fert. 48(5):515-521. https://doi.org/10.7745/KJSSF.2015.48.5.515
- Lim, G.H., K.H. Kim, B.H. Seo, and K.R. Kim. 2014. Transfer function for phytoavailable heavy metals in contaminated agricultural soils: the case of the Korean agricultural soils affected by the abandoned mining sites. Korean J. Environ. Agric. 33(4):271-281. https://doi.org/10.5338/KJEA.2014.33.4.271
- Lim, G.H., K.H. Kim, B.H. Seo, and K.R. Kim. 2015. Heavy metal accumulation in edible part of eleven crops cultivated in metal contaminated soils and their bio-concentration factor. Korean J. Environ. Agric. 34(4):260-267. https://doi.org/10.5338/KJEA.2015.34.4.46
- Lund, U. and A. Fobian. 1991. Pollution of two soils by arsenic, chromium and copper, Denmark. Geoderma. 49:83-103. https://doi.org/10.1016/0016-7061(91)90093-9
- Mandal, B.K. and K.T. Suzuki. Arsenic round the world : a review. Talanta. 58:201-235
- Manning, B.A. and S. Goldberg. 1997. Arsenic(III) and arsenic (V) adsorption on three California soils. Soil Sci. 162(12):886-895. https://doi.org/10.1097/00010694-199712000-00004
- Martinez, V.D., E.A. Vucic, D.D. Becker-Santos, L. Gil, and W.L. Lam. 2011. Arsenic exposure and the induction of human cancers. J. Toxicol. Doi:10.1155/2011/431287.
- McLaughlin, M,J., R.E. Hamon, R.G. McLaren, T.W. Speir, and S.L. Rogers. 2000. Review: a bioavailability-based rationale for controlling metal and metalloid contamination of agricultural land in Australia and New Zealand. Aust. J. Soil Res. 38(6):1037-1086. https://doi.org/10.1071/SR99128
- Mehlich, A. 1984. Mehlich-3 soil test extractant: a modification of Mehlich-2 extractant. Commun. Soil Sci. Plant Anal. 15(12):1409-1416. https://doi.org/10.1080/00103628409367568
- MIne REclamation COrp (MIRECO). 2013. Yearbook of MIRECO Statistics (2012). Mine Reclamation Corporation. Korea.
- Minister Of Environment (MOE). 2002. Soil Environment Conservation Act. Minister of Environment. Korea.
- Minister Of Environment (MOE). 2010. Soil Environment Conservation Act. Minister of Environment. Korea.
- Minister Of Environment (MOE). 2012. Soil Monitoring System and Soil Pollution Survey in 2012. Ministry of Environment. Korea.
- NAAS (National Academy of Agricultural Science). 2010. Analysis methods for soil chemical properties. Publication No. 11-1390802-000282-01, NAAS. Korea.
- Ng, J.C., J. Wang, and A. Shraim. 2003. A global health problems caused by arsenic from natural sources. Chemosphere. 52:1353-1359. https://doi.org/10.1016/S0045-6535(03)00470-3
- Noh, Y.D., K.R. Kim, W.I. Kim, K.Y. Jung, and C.O. Hong. 2015. Effect of soil chemical properties on phytoavailability of arsenic, cadmium and lead in medicinal plant fields. J. Agric. Life Sci. 49(5):267-277. https://doi.org/10.14397/jals.2015.49.5.267
- O'Neill, P. 1990. Arsenic. In: Heavy Metals in Soils, B.J. Allowway, ed. John Wiley and Sons, Inc., N.Y.
- Park, S.W. J.S. Yang, S.W. Ryu, D.Y. Kim, J.D. Shin, W.I. Kim, J.H. Choi, S.L. Kim, and A.F. Saint. 2009. Uptake and translocation of heavy metals to rice plant on paddy soils in "Top-rice" cultivation areas. Korean J. Environ. Agri. 28(2):131-138. https://doi.org/10.5338/KJEA.2009.28.2.131
- Peryea, F.J. and R. Kammereck. 1997. Phosphate-enhanced movement of arsenic out of lead arsenate-contaminated topsoil and through uncontaminated subsoil. Water, Air, Soil Pollut. 93:243-254.
- Schwertmann, U. 1973. Use of oxalate for Fe extraction from soils. Can. J. Soil Scil. 53:244-246. https://doi.org/10.4141/cjss73-037
- Selim Reza, A.H.M., J.S. Jean, H.J. Yang, M.K. Lee, B. Woodall, C.C. Liu, J.F. Lee, and S.D. Luo. 2010. Occurrence of arsenic in core sediments and groundwater in the Chapai-Nawabganj District, northwestern Bangladesh. Water Res. 44(6):2021-2037. https://doi.org/10.1016/j.watres.2009.12.006
- Smith, E., R. Naidu, and A.M. Alston. 1999. Chemistry of arsenic in soils: I. Sorption of arsenate and arsenite by four Australian soils. J. Environ. Qual. 28(6):1719-1726. https://doi.org/10.2134/jeq1999.00472425002800060005x
- Takahashi, Y., R. Minamikawa, K.H. Hattori, K. Kurishima, N. Kihou, and K. Yuita. 2004. Arsenic behavior in paddy fields during the cycle of flooded and non-flooded periods. Environ. Sci. Technol. 38(4):1038-1044. https://doi.org/10.1021/es034383n
- Tchounwou, P.B., A.K. Patlolla, and J.A. Centeno. 2003. Carcinogenic and systemic health effects associated with arsenic exposure-a critical review. Toxicol. Pathol. 31:575-588.
- Turpeinen, R., M. Pantsar-Kallio, M. Haggblom, and T. Kairesalo. 1999. Influence of microbes on the mobilization, toxicity and biomethylation of arsenic in soil. Sci. Total Environ, 236:173-180. https://doi.org/10.1016/S0048-9697(99)00269-7
- Tyler, G., and T. Olsson. 2001. Concentration of 60 elements in the soil solution as related to the soil acidity. Eur. J. Soil Sci. 52(1):151-165. https://doi.org/10.1046/j.1365-2389.2001.t01-1-00360.x
- United States Environmental Protection Agency (US EPA). 1998. Environ Protection Act.
- Wang, X.P., X.Q. Shan, S.Z. Zhang, and B. Wen. 2004. A model for evaluation of the phytoavailability of trace elements to vegetables under the field conditions. Chemosphere 55:811-822. https://doi.org/10.1016/j.chemosphere.2003.12.003
- Yoon, J.K., D.H. Kim, T.S. Kim, J.G. Park, I.R. Chung, J.H. Kim, and H. Kim. 2009. Evaluation on natural background of the soil heavy metals in Korea. J. Soil Groundwater Env. 14(3) : 32-39.