Literature DB >> 28842025

An integrated automatic system to evaluate U and Th dynamic lixiviation from solid matrices, and to extract/pre-concentrate leached analytes previous ICP-MS detection.

Melisa Rodas Ceballos1, Rafael García-Tenorio2, José Manuel Estela3, Víctor Cerdà3, Laura Ferrer4.   

Abstract

Leached fractions of U and Th from different environmental solid matrices were evaluated by an automatic system enabling the on-line lixiviation and extraction/pre-concentration of these two elements previous ICP-MS detection. UTEVA resin was used as selective extraction material. Ten leached fraction, using artificial rainwater (pH 5.4) as leaching agent, and a residual fraction were analyzed for each sample, allowing the study of behavior of U and Th in dynamic lixiviation conditions. Multivariate techniques have been employed for the efficient optimization of the independent variables that affect the lixiviation process. The system reached LODs of 0.1 and 0.7ngkg-1 of U and Th, respectively. The method was satisfactorily validated for three solid matrices, by the analysis of a soil reference material (IAEA-375), a certified sediment reference material (BCR- 320R) and a phosphogypsum reference material (MatControl CSN-CIEMAT 2008). Besides, environmental samples were analyzed, showing a similar behavior, i.e. the content of radionuclides decreases with the successive extractions. In all cases, the accumulative leached fraction of U and Th for different solid matrices studied (soil, sediment and phosphogypsum) were extremely low, up to 0.05% and 0.005% of U and Th, respectively. However, a great variability was observed in terms of mass concentration released, e.g. between 44 and 13,967ngUkg-1.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Automatic flow system; Dynamic lixiviation; Environmental solid samples; ICP-MS; Thorium; Uranium

Year:  2017        PMID: 28842025     DOI: 10.1016/j.talanta.2017.07.061

Source DB:  PubMed          Journal:  Talanta        ISSN: 0039-9140            Impact factor:   6.057


  1 in total

1.  Online Solid-Phase Extraction-Inductively Coupled Plasma-Quadrupole Mass Spectrometry with Oxygen Dynamic Reaction for Quantification of Technetium-99.

Authors:  Makoto Matsueda; Kayo Yanagisawa; Kazuma Koarai; Motoki Terashima; Kenso Fujiwara; Hironobu Abe; Akihiro Kitamura; Yoshitaka Takagai
Journal:  ACS Omega       Date:  2021-07-16
  1 in total

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