• Ketterer, M.E.; Hafer, K.M.; Mietelski, J.W.

    Resolving Chernobyl vs. global fallout contributions in soils from Poland using Plutonium atom ratios measured by inductively coupled plasma mass spectrometry, Journal of Environmental Radioactivity, Vol. 73, pp. 183-201, (2004)

    Pu in Soil using TEVA Resin and ICP-MS (KM303 )

    [ doi: 10.1016/j.jenvrad.2003.09.001   ]

  • Mas, J.L.; et al

    Method for the Detection of Tc in Seaweed Samples Coupling the use of Re as a Chemical Tracer and Isotope Dilution Inductively Coupled Plasma Mass Spectrometry, Analytica Chimica Acta, Vol. 509, pp. 83-88, (2004)

    Tc in Seaweed using TEVA Resin and ICP-MS (MJL104 )

    [ doi: 10.1016/j.aca.2003.12.014  ]

  • Ota, S.; et al

    Comparison of Various Bioassays for Dioxins Measurements in Fuel gas, Fly ash and Bottom ash, Organohalogen Compounds , Vol. 66 , p. 682, (2004)

    Dioxin in Fly Ash using Procept and PCR (OS401 )

  • Pappas, R.S.; et al

    Rapid Analysis for Plutonium-239 in 1 ml of Urine by Magnetic Sector Inductively Coupled Plasma Mass Spectrometry with a Desolvating Indroduction System, J. Anal. At. Spectrom, Vol. 19, pp. 762-766, (2004)

    Pu in Urine using TEVA Resin and ICP-MS (PR104 )

    [ doi: 10.1039/b316851d ]

  • Horwitz, E.P.; et al

    New Extraction Chromatographic Resins with High Retention for Trivalent Lanthanides and Actinides from Acidic Nitrate and Chloride Media, 27th Actinide Separations Conference, Argonne National Laboratory, Argonne, IL, June 9-12, 2003, (2003)

    Actinides, Lanthanides in Any using DGA Resin (HP103 )

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  • Ketterer, M.E.; Hafer, K.M.; Link, C.L.; Royden, C.S.; Hartsock, W. J.

    Anthropogenic U-236 at Rocky Flats, Ashtabula river harbor, and Mersey estuary: three case studies by sector inductively coupled plasma mass spectrometry, Journal of Environmental Radioactivity, Vol. 67, pp. 191-206, (2003)

    U in Soil, Sediment using UTEVA Resin and ICP-MS (KM103 )

    [ doi: 10.1016/S0265-931X(02)00186-8  ]

  • Moon, D.S.; et al

    Preconcentration of Radium Isotopes from Natural Waters Using MnO2 resin, Applied Radiation and Isotopes, Vol. 59, pp. 255-262, (2003)

    Ra in Water using MnO2 Resin and LSC, Rad-7 (MDS103 )

    [ doi: 10.1016/S0969-8043(03)00193-3   ]

  • Misiak, R; et al

    High pure, carrier free 85Sr and 83Rb tracers obtained with AIC-144 cyclotron, Nukleonika, Vol. 48. No 3, pp 155-157, (2003)

    Sr, Rb in Target using Sr and Gamma-Spec (MR103 )

  • Pappas, R.S.; et al

    A practical approach to determination of low concentration uranium isotope ratios in small volumes of urine, Journal of analytical atomic spectrometry, Vol. 18, No10, pp. 1289-129, (2003)

    U in Urine using TRU Resin and ICP-MS (PR103 )

    [ doi: 10.1039/b305515a ]

  • Schmitz-Feuerhake, I; Mietelski, J.W.; Gaca, P

    Transuranic isotopes and 90Sr in attic dust in the vicinity of two nuclear establishments in northern germany, Health Physics, Vol. 84 No 5 pp 599-607, (2003)

    Sr in Nuclear Power Plant, Environmental using Sr Resin and LCS (SI103 )