Published April 1999 | Version v1
Journal article

Effects of ionic radiological and chemical interferences on the chromatographic separation of a radionuclide standard solution

  • 1. Clemson Univ., SC (United States). Dept. of Environmental Engineering and Science
  • 2. Westinghouse Savannah River Co., Aiken, SC (United States). Savannah River Technology Center

Description

For characterizing radioactive samples there are two major considerations in the application of a coupled liquid chromatography and on-line scintillation counting system: (1) radiological interferences and (2) chemical interferences from the matrix. A study was conducted to identify which interferences from typical matrices found at several Department of Energy facilities affected the separation of a radioactive tracer solution by the coupled system. The selection of potential interferent materials was determined through a review of characterization and monitoring studies of surface water, ground water, and high level waste tank supernatant at those facilities. Incremental mass loadings of contaminant were mixed with a standardized radioactive tracer (55Fe, 63Ni, 90Sr and 147Pm) and then injected into a coupled system. The resultant chromatograms were compared to the chromatogram of the standard radionuclide solution to determine the effects of the chemical or radiological constituent. Relative to the radionuclide solution, 137Cs was the only activation/fission product used in this study to effect a radiological interference. For the natural uranium series, a radiological interference was observed for 90Sr due to either a uranium isotope or a decay product of the series. No radiological interference was observed from 228Th, though it must be noted that the elution program was not capable of completely separating the decay series nuclides of natural uranium or thorium. (author)

Additional details

Publishing Information

Journal Title
Journal of Radioanalytical and Nuclear Chemistry
Journal Volume
240
Journal Issue
1
Journal Page Range
p. 197-208
ISSN
0236-5731
CODEN
JRNCDM

Optional Information

Notes
15 refs.