Published December 2002 | Version v1
Journal article

U and Pb isotope analysis of uranium minerals by ion microprobe and the geochronology of the McArthur River and Sue Zone uranium deposits, Saskatchewan, Canada

  • 1. Oak Ridge National Lab., Oak Ridge, Tennessee (United States)
  • 2. Univ. of Tennessee, Dept. of Geological Sciences, Knoxville, Tennessee (United States)
  • 3. Queen' s Univ., Dept. of Geological Sciences, Kingston, Ontario (Canada)
  • 4. Oak Ridge Natinal Lab., Oak Ridge, Tennessee (United States)

Description

A method for in situ U-Pb isotopic analyses by secondary ion mass spectrometry (SIMS) has been developed for uranium minerals with a range of chemical compositions. This method combines the advantages of conventional U-Pb dating (i.e., use of concordia) and in situ analysis, and therefore is ideally suited for the study of chemically complex and fine-grained uranium oxides associated with uranium deposits. An ion-yield normalizing coefficient (αSIMS) that accounts for variation in relative ion-yields with chemical composition of the mineral of interest was calculated using uraninite standards that cover a range of U and Ph compositions, and an appropriate empirical mass-bias model was developed. The coefficient αSIMS varies as a function of wt% PbO, requiring two working curves to define the relationship between the 206Pb+/238U+, and 207Pb+/235U+, values measured by SIMS versus the 'true' 206Pb/238U and 207Pb/235U values: 207Pb+/235U+ = 0.762 ± 0.015 (207Pb+/235U+)0.69±0.02206Pb/238U 0.333 ± 0.007 (206Pb/238U+)0.64±0.02. The application of this technique to unconformity-type uranium deposits in the Athabasca Basin, Saskatchewan, demonstrates that at the microscale, these deposits preserve the initial age of mineralization (1486 to 1519 Ma) and a temporal record of accretion and breakup of supercontinents. Prior to in situ analyses, this detailed chronological record was obscured by the wide variability in U-Pb and Pb-Pb data obtained by micro-drilling and conventional isotopic analyses due to mixing of different generations of minerals. (author)

Additional details

Publishing Information

Journal Title
Canadian Mineralogist
Journal Volume
40
Journal Issue
6
Journal Page Range
p. 1553-1569
ISSN
0008-4476

Optional Information

Notes
49 refs., 5 tabs., 10 figs.