Elena L. Mühr-Ebert, Frank Wagner
Environmental hazards are caused by uranium mining legacies and enhanced radioactivity in utilized groundwater and surface water resources. Knowledge of uranium speciation in these waters is essential for predicting radionuclide migration and for installing effective water purification technology. The validity of the thermodynamic data for the environmental media affected by uranium mining legacies is of utmost importance. Therefore, a comprehensive and consistent database was established according to current knowledge. The uranium data included in the database is based on the NEA TDB (Guillaumont et al., 2003) and is modified or supplemented as necessary e.g. for calcium and magnesium uranyl carbonates. The specific ion interaction theory (Brönsted, 1922) is used to estimate activity constants, which is sufficient for the considered low ionic strengths. The success of this approach was evaluated by comparative experimental investigations and model calculations (PHREEQC (Parkhurst and Appelo, 1999)) for several model systems. The waters differ in pH (2.7–9.8), uranium concentration (10−9-10−4 mol/L) and ionic strength (0.002–0.2 mol/L). We used chemical extraction experiments, ESI-Orbitrap-MS and time-resolved laser-induced fluorescence spectroscopy (TRLFS) to measure the uranium speciation. The latter method is nonintrusive and therefore does not change the chemical composition of the investigated waters. This is very important, because any change of the system under study may also change the speciation.
@article{edc8b5fe-86ce-4d9e-ae7d-0fc1b3e2b51b,
title={Speciation of uranium: Compilation of a thermodynamic database and its experimental evaluation using different analytical techniques},
author={Elena L. Mühr-Ebert and Frank Wagner},
year={2019},
language={en}
}TY - JOUR TI - Speciation of uranium: Compilation of a thermodynamic database and its experimental evaluation using different analytical techniques AU - Elena L. Mühr-Ebert AU - Frank Wagner PY - 2019 LA - en ER -
Marcin D. Syczewski, Andrzej Borkowski
We analyzed the sorption capacity of phosphogypsum and clay mineral-based ceramic composites. Phosphogypsum is a waste by-product generated from apati
Mohamed L. Merroun, Sonja Selenska-Pobell
The presence of actinides in radioactive wastes is a significant environmental concern due to their potential for migration from repositories and long
PJ Nolan, Sharon E. Bone
Uranium minerals are commonly found in soils and sediment across the United States at an average concentration of 2 – 4 mg/kg. Uranium occurs in the e
Stephanie Szenknect, Adel Mesbah
In this study, synthetic copper substituted hydroxyapatite (Cu-Hap), Cu xCa10-x(PO4)6(OH)2 were prepared by co-precipitation method and were used as r
Neşe Çevirim-Papaioannou, Ezgi Yalçıntaş
The solubility of U(VI) was investigated under undersaturation conditions in various concentrations of KCl–KOH solutions across a pH range of 7.5 to 1
Nilesh Kolhe, Smita Zinjarde
This review explores the responses of various microbial systems to uranium exposure, primarily in the context of bioremediation. While there is no est