RES³T - Rossendorf Expert System for Surface and Sorption Thermodynamics

Paper Details


Bibliographic Data:


Code: GCSVB01
Paper Type: Article
Author(s): Gabriel U, Charlet L, Schlaepfer CW, Vial JC, Brachmann A, Geipel G
Title: Uranyl surface speciation on silica particles studied by time-resolved laser-induced fluorescence spectroscopy
Journal: Journal of Colloid and Interface Science
Volume: 239   Year: 2001   Pages: 358-368
ISSN-Print: 0021-9797
Internal Storage: V1214
DOI: 10.1006/jcis.2001.7602
Abstract:

The sorption of uranyl ions onto amorphous silica has been studied in the presence of atmospheric CO2 by laser-induced time-resolved fluorescence spectroscopy at trace concentrations (1.0 and 0.1 μM). Two fluorescent uranyl surface complexes have been identified in the pH range 4 to 9. Both complexes could be differentiated by lifetimes (170±25 μs at low pH and 360±50 μs at high pH) and fluorescence emission spectra. Within the constant capacitance model framework they are described by mononuclear (1 : 1) complexes with release of two and three protons, respectively. When fluorescence data were compared to wet chemistry sorption data, a third “silent” ternary uranyl–silica–carbonate surface complex had to be postulated to account partly for adsorption between pH 8.0 and 9.0. Three independent data sets led therefore to the identification of three surface complexes, postulated as SiO2UO2°, SiO2UO2OH−, and SiO2UO2OHCO33−.


Surface Area   |   Site Density / Protolysis   |   Complex Formation   |   Formatted Citation