放射化学 (Japanese Wikipedia)

Analysis of information sources in references of the Wikipedia article "放射化学" in Japanese language version.

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doi.org

  • N. Momoshima, Li-X. Song, S. Osaki and Y. Maeda (2002). “Biologically induced Po emission from fresh water”. Journal of Environmental Radioactivity 63 (2): 187-197. doi:10.1016/S0265-931X(02)00028-0. 
  • N. Momoshima, Li-X. Song, S. Osaki and Y. Maeda (2001). “Formation and emission of volatile polonium compound by microbial activity and polonium methylation with methylcobalamin”. Environmental Science and Technology 35 (14): 2596-2960. doi:10.1021/es001730+. 
  • Janja Vaupotič and Ivan Kobal (2006). “Effective doses in schools based on nanosize radon progeny aerosols”. Journal of Environmental Radioactivity 40 (39): 7494-7507. doi:10.1016/j.atmosenv.2006.07.006. 
  • Michael Durand (2006). “Indoor air pollution caused by geothermal gases”. Building and Environment 41 (11): 1607-1610. doi:10.1016/j.buildenv.2005.06.001. 
  • Paolo Boffetta (2006). “Human cancer from environmental pollutants: The epidemiological evidence”. Mutation Research/Genetic Toxicology and Environmental Mutagenesis 608 (2): 157-162. doi:10.1016/j.mrgentox.2006.02.015. 
  • M. Forte, R. Rusconi, M.T. Cazzaniga and G. Sgorbati (2007). “The measurement of radioactivity in Italian drinking waters”. Microchemical Journal 85 (1): 98-102. doi:10.1016/j.microc.2006.03.004. 
  • R. Pöllänen, M.E. Ketterer, S. Lehto, M. Hokkanen, T.K. Ikäheimonen, T. Siiskonen, M. Moring, M.P. Rubio Montero and A. Martín Sánchez (2006). “Multi-technique characterization of a nuclearbomb particle from the Palomares accident”. Journal of Environmental Radioactivity 90 (1): 15-28. doi:10.1016/j.jenvrad.2006.06.007. 
  • Yoschenko VI et al. (2006). “Resuspension and redistribution of radionuclides during grassland and forest fires in the Chernobyl exclusion zone: part I. Fire experiments”. Journal of Environmental Radioactivity 86 (2): 143-163. doi:10.1016/j.jenvrad.2005.08.003. PMID 16213067. 
  • Rabideau, S.W. (1957). “The Kinetics of the Disproportionation of Plutonium(V)”. Journal of the American Chemical Society 79 (24): 6350-6353. doi:10.1021/ja01581a002. 
  • P. G. Allen, J. J. Bucher, D. K. Shuh, N. M. Edelstein, and T. Reich (1997). “Investigation of Aquo and Chloro Complexes of UO22+, NpO2+, Np4+, and Pu3+ by X-ray Absorption Fine Structure Spectroscopy”. Inorganic Chemistry 36 (21): 4676-4683. doi:10.1021/ic970502m. 
  • David L. Clark, Steven D. Conradson, D. Webster Keogh Phillip D. Palmer Brian L. Scott and C. Drew Tait (1998). “Identification of the Limiting Species in the Plutonium(IV) Carbonate System. Solid State and Solution Molecular Structure of the [Pu(CO3)5]6- Ion”. Inorganic Chemistry 37 (12): 2893-2899. doi:10.1021/ic971190q. 
  • Jörg Rothe, Clemens Walther, Melissa A. Denecke, and Th. Fanghänel (2004). “XAFS and LIBD Investigation of the Formation and Structure of Colloidal Pu(IV) Hydrolysis Products”. Inorganic Chemistry 43 (15): 4708-4718. doi:10.1021/ic049861p. 
  • M. C. Duff, D. B. Hunter, I. R. Triay, P. M. Bertsch, D. T. Reed, S. R. Sutton, G. Shea-McCarthy, J. Kitten, P. Eng, S. J. Chipera, and D. T. Vaniman (1999). “Mineral Associations and Average Oxidation States of Sorbed Pu on Tuff”. Environ. Sci. Technol. 33 (13): 2163-2169. doi:10.1021/es9810686. 
  • R.D. Whicker and S.A. Ibrahim (2006). “Vertical migration of 134Cs bearing soil particles in arid soils: implications for plutonium redistribution”. Journal of Environmental Radioactivity 88 (2): 171-188. doi:10.1016/j.jenvrad.2006.01.010. 

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  • Yoschenko VI et al. (2006). “Resuspension and redistribution of radionuclides during grassland and forest fires in the Chernobyl exclusion zone: part I. Fire experiments”. Journal of Environmental Radioactivity 86 (2): 143-163. doi:10.1016/j.jenvrad.2005.08.003. PMID 16213067. 

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