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PUBMED FOR HANDHELDS

Journal Abstract Search


634 related items for PubMed ID: 15683879

  • 1.
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  • 2. Sources and migration of plutonium in groundwater at the Savannah River site.
    Dai M, Kelley JM, Buesseler KO.
    Environ Sci Technol; 2002 Sep 01; 36(17):3690-9. PubMed ID: 12322739
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  • 3. Source-dependent and source-independent controls on plutonium oxidation state and colloid associations in groundwater.
    Buesseler KO, Kaplan DI, Dai M, Pike S.
    Environ Sci Technol; 2009 Mar 01; 43(5):1322-8. PubMed ID: 19350898
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  • 4. Investigating Pu and U isotopic compositions in sediments: a case study in Lake Obuchi, Rokkasho Village, Japan using sector-field ICP-MS and ICP-QMS.
    Zheng J, Yamada M.
    J Environ Monit; 2005 Aug 01; 7(8):792-7. PubMed ID: 16049580
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  • 7. Pu(V) transport through Savannah River Site soils - an evaluation of a conceptual model of surface- mediated reduction to Pu (IV).
    Powell BA, Kaplan DI, Serkiz SM, Coates JT, Fjeld RA.
    J Environ Radioact; 2014 May 01; 131():47-56. PubMed ID: 24238838
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  • 9. Binding of ²³⁹Pu and ⁹⁰Sr to organic colloids in soil solutions: evidence from a field experiment.
    Chawla F, Steinmann P, Loizeau JL, Hassouna M, Froidevaux P.
    Environ Sci Technol; 2010 Nov 15; 44(22):8509-14. PubMed ID: 20964354
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  • 10. Multi-isotopic determination of plutonium (239Pu, 240Pu, 241Pu and 242Pu) in marine sediments using sector-field inductively coupled plasma mass spectrometry.
    Donard OF, Bruneau F, Moldovan M, Garraud H, Epov VN, Boust D.
    Anal Chim Acta; 2007 Mar 28; 587(2):170-9. PubMed ID: 17386770
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  • 13. Plutonium concentration and 240Pu/239Pu atomic ratio in liver of squid collected in the coastal sea areas of Japan.
    Oikawa S, Yamamoto M.
    J Environ Radioact; 2007 Mar 28; 93(3):170-80. PubMed ID: 17270324
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  • 14. Persistence of uranium groundwater plumes: contrasting mechanisms at two DOE sites in the groundwater-river interaction zone.
    Zachara JM, Long PE, Bargar J, Davis JA, Fox P, Fredrickson JK, Freshley MD, Konopka AE, Liu C, McKinley JP, Rockhold ML, Williams KH, Yabusaki SB.
    J Contam Hydrol; 2013 Apr 28; 147():45-72. PubMed ID: 23500840
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  • 15. The inflow of (238)Pu and (239+240)Pu from the Vistula River catchment area to the Baltic Sea.
    Skwarzec B, Jahnz-Bielawska A, Strumińska-Parulska DI.
    J Environ Radioact; 2011 Aug 28; 102(8):728-34. PubMed ID: 21543143
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  • 17. Geochemistry of redox-sensitive elements and sulfur isotopes in the high arsenic groundwater system of Datong Basin, China.
    Xie X, Ellis A, Wang Y, Xie Z, Duan M, Su C.
    Sci Total Environ; 2009 Jun 01; 407(12):3823-35. PubMed ID: 19344934
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  • 18. Characterization of U/Pu particles originating from the nuclear weapon accidents at Palomares, Spain, 1966 and Thule, Greenland, 1968.
    Lind OC, Salbu B, Janssens K, Proost K, García-León M, García-Tenorio R.
    Sci Total Environ; 2007 Apr 15; 376(1-3):294-305. PubMed ID: 17336369
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  • 19. An assessment of drinking-water supplies on the Hanford site: an evaluation conducted at a federal nuclear facility in southeastern Washington state.
    Hanf RW, Kelly LM.
    J Environ Health; 2005 Mar 15; 67(7):44-9. PubMed ID: 15794463
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  • 20. High-precision measurement of U-Pu-Np-Am concentrations and isotope ratios in environmental reference materials by mass spectrometry.
    Goldstein SJ, Price AA, Hinrichs KA, Lamont SP, Nunn AJ, Amato RS, Cardon AM, Gurganus DW.
    J Environ Radioact; 2021 Oct 15; 237():106689. PubMed ID: 34298408
    [Abstract] [Full Text] [Related]


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