박사

Naturally Occurring Radioactive Materials (NORMs) in Groundwater of Korea - Distribution and potential risk : 국내 지하수 중 자연방사성물질의 분포와 잠재적 위해성 연구

Shin, Woosik 2016년
논문상세정보
' Naturally Occurring Radioactive Materials (NORMs) in Groundwater of Korea - Distribution and potential risk : 국내 지하수 중 자연방사성물질의 분포와 잠재적 위해성 연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 지구 과학
  • NORM
  • accumulation
  • bottle mineral-water
  • filter
  • groundwater
  • radon
  • risk
  • uranium
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
1,155 0

0.0%

' Naturally Occurring Radioactive Materials (NORMs) in Groundwater of Korea - Distribution and potential risk : 국내 지하수 중 자연방사성물질의 분포와 잠재적 위해성 연구' 의 참고문헌

  • Zhou, P., & Gu, B. H. (2005). Extraction of oxidized and reduced forms of uranium from contaminated soils: Effects of carbonate concentration and pH. Environmental Science & Technology, 39(12), 4435–4440.
  • Zamora, M. L., Tracy, B. L., Zielinski, J. M., Meyerhof, D. P., & Moss, M. A. (1998). Chronic ingestion of uranium in drinking water: A study of kidney bioeffects in humans. Toxicological Sciences, 43(1), 68–77.
  • Zamberlan da Silva, M. E., Santana, R. G., Guilhermetti, M., Filho, I. C., Endo, E. H., Ueda-Nakamura, T., Nakamura, C. V., & Dias Filho, B. P. (2008). Comparison of the bacteriological quality of tap water and bottled mineral water. International Journal of Hygiene and Environmental Health, 211(5–6), 504–509.
  • Yang, Q., Smitherman, P., Hess, C. T., Culbertson, C. W., Marvinney, R. G., Smith, A. E., & Zheng, Y. (2014). Uranium and Radon in Private Bedrock Well Water in Maine: Geospatial Analysis at Two Scales. Environmental Science & Technology, 48(8), 4298– 4306.
  • Wanty, R. B., & Schoen, R. (1992). A review of the chemical processes affecting the mobility of radionuclides in natural waters, with applications. In L. C. S. Gundersen & R. B. Wanty (Eds.), Field Studies of Radon in Rocks, Soils, and Water (p. 183). Journal Article, CRC Press.
  • WHO. (2011). Guidelines for Drinking-Water Quality (4th Edition) (Vol. 1). Geneva.
  • Voronov, A. N. (2004). Radon-rich waters in Russia. Environmental Geology, 46(5), 630– 634
  • Vinson, D. S., Vengosh, A., Hirschfeld, D., & Dwyer, G. S. (2009). Relationships between radium and radon occurrence and hydrochemistry in fresh groundwater from fractured crystalline rocks, North Carolina (USA). Chemical Geology, 260(3–4), 159–171.
  • Vandenhove, H., Verrezen, F., & Landa, E. (2013). Radium. In D. A. Atwood (Ed.), Radionuclides in the Environment (pp. 97–108). Book Section, EIC Books.
  • Valentine, R. L., & Stearns, S. W. (1994). Radon release from water distribution system deposits. Environmental Science & Technology, 28(3), 534–537.
  • US EPA. National primary drinking water regulations (2009). Washington DC. US FDA. 21 CFR 129. Processing and bottling of bottled drinking water (2016).
  • US EPA. (2006). A System’s Guide to the Management of Radioactive Residuals from Drinking Water. Washington DC.
  • US EPA. (2000). National primary drinking water regulations; radionuclides; Final Rule. Washington DC.
  • US EPA. (1999). Cancer risk coefficients for environmental exposure to radionuclides. Washington DC.
  • US EPA. (1994). Method 200.8 : Determination of trace elements in waters and wastes by inductively coupled plasma - mass spectrometry. Federal Register (Vol. 4). Ohio.
  • US EPA. (1980). Method 900.0 : Gross Alpha and Gross Beta Radioactivity in Drinking Water (No. EPA/600/4/80/032). Washington DC.
  • UNSCEAR. (2008). Sources and effects of ionizing radiation (Vol. I). New York: United Nations Publications.
  • Tran, N. L., Locke, P. A., & Burke, T. A. (2000). Chemical and radiation environmental risk management: Differences, commonalities, and challenges. Risk Analysis, 20(2), 163–172.
  • Tracy, B. L. (2013). Radon. In D. A. Atwood (Ed.), Radionuclides in the Environment (pp. 191–206). Book Section, EIC Books.
  • Talip, Z., Eral, M., & Hi s nmez, . (2009). Adsorption of thorium from aqueous solutions by perlite. Journal of Environmental Radioactivity, 100(2), 139–143.
  • Statistics Korea. (2010). Korean Statistical Information Services. Retrieved March 16, 2016, from http://kosis.kr/statisticsList/statisticsList_01List.jsp?vwcd=MT_ZTITLE&parmTabId= M_01_01
  • Stalder, E., Blanc, A., Haldimann, M., & Dudler, V. (2012). Occurrence of uranium in Swiss drinking water. Chemosphere, 86(6), 672–679.
  • Smith, B., Powell, J. H., Gedeon, R., & Amro, H. (1996). Groundwater pollution by natural radionuclides: an evaluation of natural and mining contamination associated with phosphorite (Jordan). 375-394. Minerals, Metals and the Environment II.
  • Smedley, P. L., Smith, B., Abesser, C., & Lapworth, D. (2006). Uranium occurrence and behaviour in British groundwater. Journal Article, Nottingham: British Geological Survey.
  • Skeppstr m, K., & Olofsson, B. (2007). Uranium and radon in groundwater. European Water, 17(18), 51–62.
  • Siegel, M. D., & Bryan, C. R. (2003). Environmental geochemistry of radioactive contamination. In B. Sherwood Lollar (Ed.), Environmental Geochemistry: Treatise on Geochemistry Vol 9 (Vol. 9, pp. 205–262). Journal Article, Elsevier.
  • Shin, W., Oh, J., Choung, S., Cho, B.-W., Lee, K.-S., Yun, U., … Kim, H. K. (2016). Distribution and potential health risk of groundwater uranium in Korea. Chemosphere, 163, 108–115.
  • Selden, A. I., Lundholm, C., Edlund, B., Hogdahl, C., Ek, B.-M., Bergstrom, B. E., & Ohlson, C.-G. (2009). Nephrotoxicity of uranium in drinking water from private drilled wells. Environmental Research, 109(4), 486–494.
  • Rudnick, R. L., & Gao, S. (2004). Composition of the continental crust. In R. L. Rudnick (Ed.), The Crust: Treatise on Geochemistry Vol 3 (Vol. 3, pp. 1–64). Journal Article, Elsevier.
  • Rom, W. N., & Markowitz, S. B. (2007). Environmental and Occupational Medicine (4th Edition). (W. N. Rom & S. B. Markowitz, Eds.). Lippincott Williams & Wilkins.
  • Rogers, J. J. W., & Adams, J. A. S. (1969). Uranium. In K. H. Wedepohl (Ed.), Handbook of geochemistry (Vol. 2). Journal Article, New York: Springer-Verlag.
  • Robbins, J. A., & Edgington, D. N. (1975). Determination of recent sedimentation rates in Lake Michigan using Pb-210 and Cs-137. Geochimica et Cosmochimica Acta, 39(3), 285–304.
  • Pizarro, F., Araya, M., V squez, M., Lagos, G., Olivares, M., M ndez, M. A., Leyton, B., Reyes, A., Letelier, V., & Uauy, R. (2007). Case study of complaints on drinking water quality relationship to copper content? Biological Trace Element Research, 116(2), 131– 145.
  • Park, M. –E., Kim, G. –S. (1998). Geochemical of Uranium and Thorium Deposits from the Kyemyeongsan Pegmatite (in Korean with English abstract). Econ. Environ. Geol., 31(5), 365-374.
  • Palomo, M., Penalver, A., Aguilar, C., & Borrull, F. (2010). Presence of Naturally Occurring Radioactive Materials in sludge samples from several Spanish water treatment plants. Journal of Hazardous Materials, 181(1–3), 716–721.
  • Nriagu, J., Nam, D.-H., Ayanwola, T. A., Dinh, H., Erdenechimeg, E., Ochir, C., & Bolormaa, T.-A. (2012). High levels of uranium in groundwater of Ulaanbaatar, Mongolia. Science of the Total Environment, 414, 722–726.
  • Nair, S., & Merkel, B. J. (2012). Effect of Mg-Ca-Sr on the sorption behavior of uranium (VI) on silica. In B. Merkel & M. Schipek (Eds.), The New Uranium Mining Boom (pp. 763–770). Book Section, New York: Springer.
  • Na, C. –H., Park, H. –Y., & Park, H. –J. (2000). Geochemical Study on the Uranium Anomaly around the Shinbo Talc Mine (II) – In the Light of Isotopic Characteristics – (in Korean with English abstract). Econ. Environ. Geol., 33(5), 367-377.
  • NSSC. Enforcement Decree of the Act on Protective Action Guidelines against Radiation in the Natural Environment (in Korean) (2012). Seoul, Republic of Korea.
  • NRC. (1999b). Health effects of exposures to radon: BEIR VI. National Research Council. National Academy Press. Washington DC.
  • NRC. (1999a). Evaluation of Guidelines to Technologically Enhanced Naturally Occurring Radioactive Materials. National Research Council. National Academy Press. Washington DC.
  • Murphy, W. M., & Shock, E. L. (1999). Environmental Aqueous Geochemistry of Actinides. Reviews in Mineralogy and Geochemistry, 38, 221–253.
  • Morse, J. G. (Ed.). (2013). Nuclear methods in mineral exploration and production, Volume 7. Amsterdam: Elsevier.
  • Mester, Z., & Sturgeon, R. E. (2003). Sample preparation for trace element analysis, Volume 41. Amsterdam: Elsevier.
  • Mahood, Z. U. W., & Mohamed, C. A. R. (2013). Thorium. In D. A. Atwood (Ed.), Radionuclides in the Environment (pp. 247–253). Book Section, EIC Books.
  • ME. Rules on drinking water quality and inspection, etc, (in Korean) Pub. L. No. Act No. 621, Ministry of Environment, 2015 (2015). Seoul, Republic of Korea.
  • ME. Enforcement Decree of the drinking water management act (in Korean) (2016). Seoul, Republic of Korea.
  • Lytle, D. A., Sorg, T., Wang, L., & Chen, A. (2014). The accumulation of radioactive contaminants in drinking water distribution systems. Water Research, 50(2010), 396– 407.
  • Leventhal, J. S., Daws, T. A., & Frye, J. S. (1986). Organic geochemical analysis of sedimentary organic matter associated with uranium. Applied Geochemistry, 1(2), 241– 247.
  • Lee, S. M. (1973). Applications of metamorphic facies and facies series to the tectonics of Korea. Journal of Geological Society in Korea, 10, 25-36.
  • Lee, M. H., Choi, G. S., Cho, Y. H., Lee, C. W., & Shin, H. S. (2001). Concentrations and activity ratios of uranium isotopes in the groundwater of the Okchun Belt in Korea. Journal of Environmental Radioactivity, 57(2), 105–116.
  • Lee, D. S. (1987). Geology of Korea. Geological Society of Korea, Kyohaksa, Seoul.
  • Langmuir, D. (1978). Uranium solution-mineral equilibria at low temperatures with applications to sedimentary ore deposits. Geochimica et Cosmochimica Acta, 42(6), 547– 569.
  • Kurttio, P., Komulainen, H., Leino, A., Salonen, L., Auvinen, A., & Saha, H. (2005). Bone as a possible target of chemical toxicity of natural uranium in drinking water. Environmental Health Perspectives, 113(1), 68–72.
  • Kurttio, P., Auvinen, A., Salonen, L., Saha, H., Pekkanen, J., Makelainen, I., Vaisanen, S. B., Penttila, I. M., & Komulainen, H. (2002). Renal effects of uranium in drinking water. Environmental Health Perspectives, 110(4), 337–342.
  • Krachler, M., & Shotyk, W. (2009). Trace and ultratrace metals in bottled waters: Survey of sources worldwide and comparison with refillable metal bottles. Science of the Total Environment, 407(3), 1089–1096.
  • Kim, M.S., Yang, J. H., Jeong, C. H., Kim, H. K., Kim, D. W., & Jo, B. U. (2014). Geochemical Origins and Occurrences of Natural Radioactive Materials in Borehole Groundwater in the Goesan Area (in Korean with English abstract). The Journal of Engieering Geology, 24(4), 535-550.
  • Kim, J. N., Ree, J. H., Kwon, S. T., Park, Y., Choi, S. J., & Cheong, C. S. (2000). The Kyonggi shear zone of the central Korean peninsula: late orogenic imprint of the North and South China collision. The Journal of geology, 108(4), 469-478.
  • Kim, J. H. (1996). Mesozoic tectonics in Korea. Journal of Southeast Asian Earth Sciences, 13 (3-5), 251-265.
  • Kim, J. H. (1987). Caledonian Ogcheon orogeny of Korea with special reference to the Ogcheon uraniferous marine black slate (PhD Thesis) (Book). Tokyo Univ., Tokyo.
  • Kim, H. S. (2012). Metamorphism and Deformation of the Late Palezoic Pyeongan Supergroup in the Taebaeksan Basin: Reviews on the Permo-Triassic Songrim Orogeny. Jour. Petrol. Soc. Korea, 21 (2), 151-171.
  • Keith, L. S., Faroon, O. M., & Fowler, B. A. (2007). Uranium. In G. F. Nordberg, B. A. Fowler, M. Nordberg, & L. Friberg (Eds.), Handbook on the toxicology of metals (3rd Ed.) (3rd ed., pp. 1307–1346). Book Section, San Diego: Academic Press.
  • KIGAM. (1995). Geological Map of Korea (1: 1,000,000) (in Korean). Korea Institute of Geology, Mining, and Materials. Book, Daejeon, Korea.
  • KEI. (2005). A study on management and rational remedial criteria of groundwater (in Korean). Gwacheon, Republic of Korea: Korea Environment Institute.
  • Jurgens, B. C., Fram, M. S., Belitz, K., Burow, K. R., & Landon, M. K. (2010). Effects of Groundwater Development on Uranium: Central Valley, California, USA. Ground Water, 48(6), 913–928.
  • Jung, J. –W. and Kang, J. –H. (2014). Geological structures in the Bonghwajae area Jecheon-si, Chungcheongbuk-do, Korea (in Korean with English abstract). Jour. Petro. Soc. Korea, 23(2), 105-117.
  • Jung, H. B., Boyanov, M. I., Konishi, H., Sun, Y., Mishra, B., Kemner, K. M., Roden, E. E., & Xu, H. (2012). Redox Behavior of Uranium at the Nanoporous Aluminum Oxide- Water Interface: Implications for Uranium Remediation. Environmental Science & Technology, 46(13), 7301–7309.
  • Jia, G., Torri, G., Ocone, R., Di Lullo, A., De Angelis, A., & Boschetto, R. (2008). Determination of thorium isotopes in mineral and environmental water and soil samples by α-spectrometry and the fate of thorium in water. Applied Radiation and Isotopes, 66(10), 1478–1487.
  • Jeong, C. H., Ryu, K. S., Kim, M. S., Kim, T. S., Han, J. S., & Jo, B. U. (2013). Geochemical Occurrence of Uranium and Radon-222 in Groundwater at Test Borehole Site in the Daejeon area (in Korean with English abstract). The Journal of Engineering Geology, 23(2), 171-186.
  • Jeong, C. H., Kim, M. S., Lee, Y. J., Han, J. S., Jang, H. G., & Jo, B. U. (2011). Hydrochemistry and Occurrence of Natural Radioactive Materials within Borehole Groundwater in the Cheongwon Area (in Korean with English abstract). The Journal of Engineering Geology, 21(2), 163-178.
  • Jeong, C. H., Kim, D. W., Kim, M. S., Lee, Y. J., Kim, T. S., Han, J. S., & Cho, B. U. (2012). Occurrence of Natural Radioactive Materials in Borehole Groundwater and Rock Core in the Icheon Area (in Korean with English abstract). The Journal of Engineering Geology, 22(1), 95-111.
  • Jang, J. Y., Jo, S. N., Kim, S. Y., Kim, S. J., & Jung, H. G. (2007). Korean exposure factors handbook (in Korean). (D, Ed.). Seoul, Korea: Ministry of Environment.
  • Jacobs, J. A., & Smalling, R. (2005). Groundwater and Uranium: Chemical Behavior and Treatment. In Water Encyclopedia. Book Section, John Wiley & Sons, Inc.
  • ISO 11704. (2010). Water quality -- Measurement of gross alpha and beta activity concentration in non-saline water -- Liquid scintillation counting method. Geneva, Switzerland.
  • ICRP. (1991). 1990 recommendations of the international commission on radiological protection. ICRP Publication 60. Annals of the ICRP, 21 (1-3).
  • IBWA. (2012). Bottled Water Code of Practice. Alexandria, VA: International Bottled Water Association.
  • Hwang, J. (2013). Occurrence of U-minerals and Source of U in Groundwater in Daebo Granite, Daejeon Area (in Korean with English Abstract). The Journal of Engineering Geology, 23(4), 399–407. Journal Article.
  • Hindshaw, R. S., Tipper, E. T., Reynolds, B. C., Lemarchand, E., Wiederhold, J. G., Magnusson, J., Bernasconi, S. M., Kretzschmar, R., & Bourdon, B. (2011). Hydrological control of stream water chemistry in a glacial catchment (Damma Glacier, Switzerland). Chemical Geology, 285(1–4), 215–230. Journal Article.
  • Hess, C. T., Michel, J., Horton, T. R., Prichard, H. M., & Coniglio, W. A. (1985). The occurrence of radioactivity in public water supplies in the United States. Health Phys, 48(5), 553–586.
  • Gulson, B. L., Law, A. J., Korsch, M. J., & Mizon, K. J. (1994). Effect of plumbing systems on lead content of drinking water and contribution to lead body burden. Science of the Total Environment, 144(1), 279–284.
  • Gascoyne, M. (1992). Geochemistry of the actinides and their daughters. In M. Ivanovich & H. R. S (Eds.), Uranium-series disequilibrium: applications to earth, marine, and environmental sciences. Book Section, Oxford Science Press.
  • Friedman, M. J., Hill, A. S., Reiber, S. H., Valentine, R. L., Larsen, G., Young, A., Korshin, G. V., & Peng, C. Y. (2010). Assessment of inorganics accumulation in drinking water system scales and sediments. Water Research Foundation. Denver.
  • Fox, P. M., Davis, J. A., & Zachara, J. M. (2006). The effect of calcium on aqueous uranium(VI) speciation and adsorption to ferrihydrite and quartz. Geochimica et Cosmochimica Acta, 70(6), 1379–1387.
  • Fons, J., Zapata-Garcia, D., Tent, J., & Llaurado, M. (2013). Simultaneous determination of gross alpha, gross beta and Ra-226 in natural water by liquid scintillation counting. Journal of Environmental Radioactivity, 125, 56–60.
  • Fonollosa, E., Nieto, A., Pe alver, A., Aguilar, C., & Borrull, F. (2015). Presence of radionuclides in sludge from conventional drinking water treatment plants. A review. Journal of Environmental Radioactivity, 141, 24–31.
  • Fisher, E. L., Fuortes, L. J., Valentine, R. L., Mehrhoff, M., & Field, R. W. (2000). Dissolution of 226Radium from pipe-scale deposits in a public water supply. Environment International, 26(1–2), 69–73.
  • Enders, A., & Lehmann, J. (2012). Comparison of Wet-Digestion and Dry-Ashing Methods for Total Elemental Analysis of Biochar. Communications in Soil Science and Plant Analysis, 43(7), 1042–1052.
  • Eisenbud, M., & Gesell, T. F. (1997). Environmental Radioactivity from Natural, Industrial & Military Sources: From Natural, Industrial and Military Sources. Academic press.
  • EFSA. (2009). Scientific opinion of the panel on contaminants in the food chain on a request from german federal institute for risk assessment (BfR) on uranium in foodstuffs, in particular mineral water. The EFSA Journal, 1018, 1–59.
  • Dragovic, S. D., Jankovic-Mandic, L. J., Dragovic, R. M., Dordevic, M. M., & Dokic, M. M. (2012). Spatial distribution of the Ra-226 activity concentrations in well and spring waters in Serbia and their relation to geological formations. Journal of Geochemical Exploration, 112, 206–211.
  • Drage, J., & Kennedy, G. W. (2011). Occurrence and Mobilization of Uranium in Groundwater in Nova Scotia. In Geomontreal 2013.
  • Cooney, C. M. (2008). Drinking-water analysis turns up even more toxic compounds. Environmental Science and Technology, 42(22), 8175.
  • Cluzel, D. (1992). Ordovician bimodal magmatism in the Ogcheon belt (South Korea): intracontinental rift-related volcanic activity. Journal of Southeast Asian Earth Sciences, 7(2), 195-209.
  • Chough, S. K., Kwon, S.-T., Ree, J.-H., & Choi, D. K. (2000). Tectonic and sedimentary evolution of the Korean peninsula: a review and new view. Earth-Science Reviews, 52(1– 3), 175–235.
  • Choo, C. O. (2002). Characteristics of Uraniferous Minerals in Daebo Granite and Significance of Mineral Species (in Korean with English abstract). Journal of Mineral Society in Korea, 15(1), 11-21.
  • Cho, B. W., Choo, C. O., Kim, M. S., Hwang, J., Yun, U., & Lee, S. (2015). Spatial relationships between radon and topographical, geological, and geochemical factors and their relevance in all of South Korea. Environmental Earth Sciences, 74(6), 5155-5168.
  • Chang, K. –H. (1978). Late Mesozoic stratigraphy, sedimentation and tectonics of southeastern Korea (II) – with discussion on petroleum possibility – (in Korean with English abstract). Journal of the Geological Society of Korea, 14(3), 120-135.
  • Carpenter, R., Beasley, T. M., Zahnle, D., & Somayajulu, B. L. K. (1987). Cycling of fallout (Pu, 241 Am, 137 Cs) and natural (U, Th, 210 Pb) radionuclides in Washington continental slope sediments. Geochimica et Cosmochimica Acta, 51(7), 1897-1921.
  • Brugge, D., & Buchner, V. (2011). Health effects of uranium: new research findings. Reviews on Environmental Health, 26(4), 231–249.
  • Berisha, F., & Goessler, W. (2013). Uranium in Kosovo’s drinking water. Chemosphere, 93(9), 2165–2170.
  • Bednar, A. J., Gent, D. B., Gilmore, J. R., Sturgis, T. C., & Larson, S. L. (2004). Mechanisms of thorium migration in a semiarid soil. Journal of environmental quality, 33(6), 2070-2077.
  • Ball, T. K., Cameron, D. G., & Colman, T. B. (1992). Aspects of radon potential mapping in Britain. Radiation Protection Dosimetry, 45(1–4), 211–214.
  • Baik, M.-H., Park, C.-K., & Cho, W.-J. (2007). Migration and Retardation Properties of Uranium through a Rock Fracture in a Reducing Environment (in Korean with English Abstract). Journal of Nuclear Fuel Cycle and Waste Technology (Korean), 5(2), 113–
  • Ayotte, J. D., Flanagan, S. M., & Morrow, W. S. (2007). Occurrence of Uranium and 222Radon in Glacial and Bedrock Aquifers in the Northern United States, 1993-2003. Book, Citeseer.
  • ASTM. (2009). C1402-04 : Standard Guide for High-Resoultion Gamma-Ray Spectrometry of Soil Samples. West Conshohocken, PA: ASTM International.
  • APHA/AWWA/WEF. (2005). Standard methods for the examination of water and wastewater (21th Edition). Washington DC: American Public Health Association.