DOE OSTI · 2346102
A new method for quantifying 64 Cu in nuclear debris samples
Abstract
Quantifying 64 Cu in post-detonation nuclear debris samples can provide important diagnostic information regarding the structural materials used within a nuclear device. However, this task is challenging due to the weak gamma emissions associated with the decay of 64 Cu, its short half-life (12.701 h), and the presence of interfering fission product radioisotopes. Large quantities of debris sample are generally needed to accurately quantify 64 Cu, which can be problematic in sample-limited scenarios where other radiometric analyses are required. Herein, we present a new method for the separation of 64 Cu from solutions of mixed fission products and demonstrate the quantification of its activity through use of gas-flow proportional beta counting. Here, the new method was validated through a series of rigorous tests and was shown to improve the detection limit of 64 Cu by over two orders of magnitude, from 2.5 × 10 6 to 1.3 × 10 4 atoms/sample for 100 min measurements.
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Wren, Melinda Suzanne, Weberg, Alexander Bent, Salazar, Amanda Ann, Klosterman, Michael Ryan, Eaton, Susan Joy, Goehring, Tanya Lee, Herman, Staci M., Pierson, Bruce D., Warzecha, Evan J., Dale, Gregory E., Fotiades, Nikolaos, May, Iain, Hanson, Susan Meriel Kloek. 2024-04-22. A new method for quantifying 64 Cu in nuclear debris samples. https://doi.org/10.1016/j.talanta.2024.126140
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