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Updated: Jan 10, 2026

A Novel Technique for Raman Analysis of Highly Radioactive Samples Using Any Standard Micro-Raman Spectrometer
Published on: April 12, 2017
Uranium speciation by time-resolved laser-induced fluorescence spectroscopy
Alena Zavadilová1, Martin Daňo1, Zdeněk Zapletálek1
1Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering, Prague, Czech Republic.
Abstract:
Uranium(VI) speciation in aqueous carbonate solutions was systematically investigated using time-resolved laser-induced fluorescence spectroscopy (TRLFS) across a broad pH range (4.3-13.0) at room temperature. Distinct uranyl complexes were identified based on their luminescence lifetimes and emission spectra, and their formation was correlated with the theoretical speciation models. Particular emphasis was placed on alkaline conditions, where uranium speciation is less understood due to weak luminescence signals. This study revealed the presence of multiple hydroxo and carbonato complexes, including non-luminescent species at high pH. These findings provide new insights into uranium(VI) behaviour in cementitious environments relevant to deep geological repositories. Moreover the dynamics of complex formation were investigated, and the quantity of precipitates were quantified using the methods based on the luminescent properties of uranium and the presence of a complexing agent. The luminescence intensity was shown to be independent of pH and linearly correlated with uranium concentration, confirming TRLFS as a robust tool for uranium quantification in variable geochemical settings. This work contributes to a more accurate understanding of uranium mobility and stability in nuclear waste management scenarios and in locations contaminated with elevated uranium levels as a resulting of ore extraction or processing.
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