Mass spectrometry is a widely used tool for analysis of uranium isotopic composition. For solution based inductively coupled plasma mass spectrometry, uranium isotopes are typically analyzed after purification from complex matrices. In this work, we tested the ability of three mass spectrometers (ThermoScientific iCAP TQ, ThermoScientific Neoma, and Agilent 8900) to analyze uranium isotopes in an unpurified NIST reference material (SRM2780a, Hard Rock Mine Waste) digest solution. Results indicate that 235U/238U can be analyzed within 1% of the true value. 234U/238U is a more challenging analysis due to low count rates and potential isobar interferences, but strategies to mitigate these effects, such as the use of reaction gases in a collision cell and desolvating nebulizer introduction system, are effective for the triple quadrupole instruments. However, the use of the Neoma MS/MS in reaction mode using O2 gas was problematic. Nevertheless, analysis of unpurified solutions for quick assessment of uranium isotope compositions is practical, especially when high precision is not required.
Scott, Sean R., et al. "Uranium isotopic analysis in unpurified solutions by ICP-MS." Journal of Analytical Atomic Spectrometry, vol. 39, no. 8, Jun. 2024. https://doi.org/10.1039/d4ja00130c
Scott, Sean R., Hobbs, Kirby P., French, Amanda D., Arnquist, Isaac J., Anguiano, Sonia Alcantar, Sullivan, Daniel L., & Herman, Staci M. (2024). Uranium isotopic analysis in unpurified solutions by ICP-MS. Journal of Analytical Atomic Spectrometry, 39(8). https://doi.org/10.1039/d4ja00130c
Scott, Sean R., Hobbs, Kirby P., French, Amanda D., et al., "Uranium isotopic analysis in unpurified solutions by ICP-MS," Journal of Analytical Atomic Spectrometry 39, no. 8 (2024), https://doi.org/10.1039/d4ja00130c
@article{osti_2377817,
author = {Scott, Sean R. and Hobbs, Kirby P. and French, Amanda D. and Arnquist, Isaac J. and Anguiano, Sonia Alcantar and Sullivan, Daniel L. and Herman, Staci M.},
title = {Uranium isotopic analysis in unpurified solutions by ICP-MS},
annote = {Mass spectrometry is a widely used tool for analysis of uranium isotopic composition. For solution based inductively coupled plasma mass spectrometry, uranium isotopes are typically analyzed after purification from complex matrices. In this work, we tested the ability of three mass spectrometers (ThermoScientific iCAP TQ, ThermoScientific Neoma, and Agilent 8900) to analyze uranium isotopes in an unpurified NIST reference material (SRM2780a, Hard Rock Mine Waste) digest solution. Results indicate that 235U/238U can be analyzed within 1% of the true value. 234U/238U is a more challenging analysis due to low count rates and potential isobar interferences, but strategies to mitigate these effects, such as the use of reaction gases in a collision cell and desolvating nebulizer introduction system, are effective for the triple quadrupole instruments. However, the use of the Neoma MS/MS in reaction mode using O2 gas was problematic. Nevertheless, analysis of unpurified solutions for quick assessment of uranium isotope compositions is practical, especially when high precision is not required.},
doi = {10.1039/d4ja00130c},
url = {https://www.osti.gov/biblio/2377817},
journal = {Journal of Analytical Atomic Spectrometry},
issn = {ISSN 0267-9477},
number = {8},
volume = {39},
place = {United States},
publisher = {Royal Society of Chemistry},
year = {2024},
month = {06}}