Trace determination of uranium and thorium in biological samples by radiochemical neutron activation analysis
Ljudmila Benedik, U. Repinc, Anthony R. Byrne, P. Stegnar
Abstract
Ljudmila Benedik, U. Repinc, Anthony R. Byrne, P. Stegnar
Abstract
Radiochemical neutron activation analysis (RNAA) is an excellent method for determining uranium and thorium; it offers unique possibilities for their ultratrace analysis using selective radiochemical separations. Regarding the favourably sensitive nuclear characteristics of uranium and of thorium with respect to RNAA, but the different half-lives of their induced nuclides, two different approaches were used. In the first approach uranium and thorium were determined separately via U, Np and Pa. In the second approach these elements were determined simultaneously in a single sample using U and/or Np and Pa. Isolation of induced nuclides was based on separation by extraction and/or anion exchange chromatography. Chemical yields were measured in each sample aliquot using added U, Np and Pa radioisotopic tracers.
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Radiochemical neutron activation analysis (RNAA) is an excellent method for determining uranium and thorium; it offers unique possibilities for their ultratrace analysis using selective radiochemical separations. Regarding the favourably sensitive nuclear characteristics of uranium and of thorium with respect to RNAA, but the different half-lives of their induced nuclides, two different approaches were used. In the first approach uranium and thorium were determined separately via U, Np and Pa. In the second approach these elements were determined simultaneously in a single sample using U and/or Np and Pa. Isolation of induced nuclides was based on separation by extraction and/or anion exchange chromatography. Chemical yields were measured in each sample aliquot using added U, Np and Pa radioisotopic tracers.
Key concepts: Thorium, Nuclide, Uranium, Radiochemistry, Neutron activation analysis, Chemistry, Trace Amounts, Neutron activation