Improvement of measurement precisions for uranium isotopes at ultra trace levels by modification of the sample introduction system in MC-ICP-MS

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Abstract

Multi-collector inductively coupled plasma mass spectrometry (MC-ICP-MS) is currently used in our laboratory for isotopic and quantitative analyses of nuclear materials at ultra-trace levels in environmental swipe samples, which is a very useful for monitoring undeclared nuclear activities. In this study, to improve measurement precisions of uranium isotopes at ultratrace levels, we adopted a desolvating nebulizer system (Aridus-II, CETAC., USA), which can improve signal sensitivity and reduce formation of uranium hydride. A peristaltic pump was combined with Aridus-II in the sample introduction system of MC-ICP-MS to reduce long-term signal fluctuations by maintaining a constant flow rate of the sample solution. The signal sensitivity in the presence of Aridus-II was improved more than 10-fold and the formation ratio of UH/U decreased by 16- to 17-fold compared to a normal spray chamber. Long-term signal fluctuations were significantly reduced by using the peristaltic pump. Detailed optimizations and evaluations with uranium standards are also discussed in this paper.

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Park, R., Lim, S. H., Han, S. H., Lee, M. Y., Park, J., Lee, C. G., & Song, K. (2016). Improvement of measurement precisions for uranium isotopes at ultra trace levels by modification of the sample introduction system in MC-ICP-MS. Mass Spectrometry Letters, 7(2), 50–54. https://doi.org/10.5478/MSL.2016.7.2.50

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