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Yoon, Soh-Joung; Helmke, Philip A.; Amonette, James E.; Bleam, William F.
Pacific Northwest National Lab., Richland, WA (United States). Environmental Molecular Sciences Laboratory. Funding organisation: US Department of Energy (United States)2002
Pacific Northwest National Lab., Richland, WA (United States). Environmental Molecular Sciences Laboratory. Funding organisation: US Department of Energy (United States)2002
AbstractAbstract
[en] The feasibility of immobilizing radionuclides on mineral surfaces was examined in the absence and the presence of phosphate anions, using trivalent lanthanide ions (Eu3+, Gd3+, and Dy3+) as chemical analogues of trivalent actinide radionuclides. The amount of the lanthanide ions (Ln3+) sorbed on boehmite (gamma-AlOOH) surfaces dramatically increased on the presence of phosphate below pH 5. The structure of the sorbed lanthanide was determined by X-ray absorption spectroscopy, magnetic susceptibility measurements, and electron paramagnetic resonance spectroscopy. We proved Dy3+ forms precipitates on boehmite surfaces in the presence of phosphate, and Gd3+ both in the presence and absence of phosphate. In the presence of phosphate, however, these rare-earth cations react to from ultrafine particles of LnPO4 surface precipitates on boehmite surfaces
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Source
PNNL-SA--37890; 1483; KP1301030; AC06-76RL01830
Record Type
Journal Article
Journal
Langmuir; ISSN 0743-7463;
; v. 18(26); p. 10128-10136

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