Published 2002 | Version v1
Journal article

Direct evidence for enhanced inner-sphere chloro complexation of EU(III) and Cm(III) in anion exchange resin phase studied by time-resolved laser-induced fluorescence spectroscopy

  • 1. Shizuoka Univ., Ohya (Japan). Graduate School of Science and Engineering
  • 2. Japan Atomic Energy Research Inst., Ibaraki (Japan). Advanced Science Research Center
  • 3. Shizuoka Univ., Ohya (Japan). Radiochemistry Research Lab.

Description

In anion exchange resin systems with LiCl-aqueous and LiCl-(H2O+CH3OH) solutions, the extent of chloro complexation of M(III) (M=Eu, Cm) was estimated from inner-sphere hydration number (NH2O), i.e., the number of water molecules in the first coordination sphere of M(III) and from peak area ratio (A2/A1) of 5D0?7F2 transition (A2) to 5D0?7F1 transition (A1) in emission spectrum of Eu(III), which reflects the ligand environment both in the inner- and outer-spheres of Eu(III). The NH2O of M(III) both in the solution and resin phases decreased with an increase of LiCl and CH3OH concentrations, indicating the formation of an inner-sphere M(III)-chloro complex. From the comparison of NH2O between the both phases, it was found that the extent of the inner-sphere chloro complexation of M(III) in the resin phase is higher than that in the solution phase. The A2/A1 ratio in the both phases increased with an increase of interaction of Eu(III) with Cl-, which are well correlated with the results of NH2O. The sorption equilibrium of M(III) was discussed by comparing the extent of the chloro complexation with the distribution coefficient

Additional details

Publishing Information

Journal Title
Radiochimica Acta
Journal Volume
90
Journal Issue
4
Journal Page Range
p. 193-197
ISSN
0033-8230
CODEN
RAACAP