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Isotope correlation technique for Pu mass analysis of PWR UO2spent fuel rods

  • Hee Seo*
  • , Seong Kyu Ahn
  • , Bo Young Han
  • , Chaehun Lee
  • , Hee Sung Shin
  • , Bong Young Kim
  • , Seung Kyu Lee
  • , Byung Hee Won
  • , Kwang Ho Jo
  • , Ho Dong Kim
  • , Geun Il Park
  • , Se Hwan Park
  • *Corresponding author for this work
  • Korea Atomic Energy Research Institute

Research output: Contribution to journalJournal articlepeer-review

Abstract

A simple and fast method of nuclear material accountancy of pressurized water reactor (PWR) UO2spent fuel rods for safeguards application was developed utilizing the isotope correlation between the amounts of 137Cs and total Pu. To this end, the following steps were taken: (1) as much destructive analysis (DA) data as possible for segments taken from a PWR UO2spent fuel rod were aggregated from publicly available data sources; (2) the DA data were corrected so as to have the same cooling time (i.e., CT = 0 y) and analyzed for outliers; (3) an equation converting the 137Cs amount to the Pu amount was obtained by regression analysis with logarithmic curve fitting; and (4) the error in determining the Pu amount was evaluated for the imposition of a limit on the range of burnup (BU) or initial enrichment (IE). It was found that the averaged % error in calibration was determined to be 3.88% ± 2.68% (= mean ± 1 standard deviation) for the BU range over 30 GWd/tU and falling with increasing BU range. On the other hand, there was no benefit in applying the limit of the IE range. Lastly, the Pu-mass difference between various methods was compared and it was found that the difference can be incurred up to 11.4%, according to the choice of method. In conclusion, the proposed isotope correlation technique could be used for input material accountancy with reasonable uncertainty.

Original languageEnglish
Pages (from-to)1563-1572
Number of pages10
JournalJournal of Nuclear Science and Technology
Volume53
Issue number10
DOIs
StatePublished - 2016.10.2

Keywords

  • isotope correlation
  • nuclear material accountancy
  • Safeguards
  • spent fuel

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