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On the stoichiometry and stability of americium(III) complexes with a hydrophilic SO3–Ph–BTP ligand, studied by liquid–liquid extraction

Łukasz SteczekDepartment - Centre for Radiochemistry and Nuclear Chemistry, Institute of Nuclear Chemistry and Technology, Dorodna 16, 03-195 Warsaw, PolandMagdalena RejnisDepartment - Centre for Radiochemistry and Nuclear Chemistry, Institute of Nuclear Chemistry and Technology, Dorodna 16, 03-195 Warsaw, PolandJ. NarbuttDepartment - Centre for Radiochemistry and Nuclear Chemistry, Institute of Nuclear Chemistry and Technology, Dorodna 16, 03-195 Warsaw, PolandMarie‐Christine CharbonnelNuclear Energy Division, RadioChemistry & Processes Department, CEA Marcoule, 30207 Bagnols sur Cèze, FrancePhilippe MoisyNuclear Energy Division, RadioChemistry & Processes Department, CEA Marcoule, 30207 Bagnols sur Cèze, France
2015en
ABI

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Abstract 1:1 and 1:2 complexes of americium(III) with a hydrophilic anionic SO 3 –Ph–BTP 4− ligand were detected in acidic aqueous nitrate solutions by a solvent extraction method. The determined conditional stability constants of these complexes, log β 1 = 4.35 ± 0.07 and log β 2 = 7.67 ± 0.06, related to 1 M aqueous solutions, are much lower than the literature values for the analogous curium species, determined by TRLFS in very dilute aqueous solutions. There is also no evidence for the existence of the 1:3 Am 3+ complex similar to the reported curium(III) complex. A hypothesis has been formulated to explain these discrepancies. It suggests the necessity to carefully check the equilibria in each phase of solvent extraction systems containing two competing ligands—lipophilic and hydrophilic.

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