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Pellet-Rostaing, S.; Chitry, F.; Lemaire, M.; Guy, A.; Foos, J.
Nuclear waste: from research to industrial maturity2000
Nuclear waste: from research to industrial maturity2000
AbstractAbstract
[en] Separating traces of caesium from aqueous medium containing high sodium concentration is a harsh problem because caesium and sodium have a similar behaviour in aqueous medium. The aim of our study was to select a highly caesium-selective ligand in a nano-filtration-complexation process in order to achieve Cs+/Na+ separation. This process involve a nano-filtration step combined with a preliminary complexation step. Caesium complexes are retained by the nano-filtration membrane whereas free sodium cations pass through it. We tried to find a relation between the ligands structure and their activity towards caesium-complexation. Among the synthesized receptors, Tetra-hydroxylated bis-crown-6 calix[4]arene was found to be the more caesium-selective ligand (S=β(Cs+)/β(Na+)=6600). Combined with a nano-filtration process, this ligand helped reaching 90% caesium retention in a highly concentrated aqueous medium ([NaNO3] = 3 mol/L). (authors)
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Societe Francaise d'Energie Nucleaire (SFEN), 75 - Paris (France); (v.1-2) 888 p; 2000; p. 872-878; Safewaste 2000 -2. International Conference, Nuclear Waste: From Research to Industrial Maturity; Montpellier (France); 2-4 Oct 2000; 14 refs.
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Book
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Conference
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