Published May 5, 1997 | Version v1
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Conception, synthesis and application of tripodands in actinide/lanthanide separation

Description

The purpose of this work is the synthesis of C, H, O and N containing compounds able to separate '4f' and '5f' elements by liquid/liquid extraction. In a first part, the literature's study allow us to point out actinide and lanthanide ions actual nature and the different ways offered by organic chemistry to share two metallic ions between two liquid phases. On one hand, these trivalent cations' high coordination numbers drive us to synthesize tripodands with hard sites which were fitted for complexation. On the other hand, it appeared that carboxylate or even less-hard site like pyridine chelate selectively actinides, allowing separation. In a second part, 60 ligands were synthesized. In each of the ligands families, a structural parameter changes (site nature, distance between two neighbouring sites, sites respective orientation, lipophilicity and rigidity). 2,2-dihydroxymethyl-dodecanol and 1,3,5- tri(chlorocarbonyl) benzene were chosen as core. O-alkylation and amidation reactions were also peculiarly studied. Rekker's proceeding for lipophilicity calculation was used in order to establish a structure-activity relationship. In a third part, extraction assays with radioactive effluents (152Eu and 241Am) point out extraction and separation abilities of our compounds. Different operating ways were used according as ligand is soluble in aqueous or organic phase. Organic phase-soluble compounds were compared to DcH18C6, pyridine ones to 2,4,6-tri(2-pyridyl)-l,3,5-triazine (TPTZ) and carboxylate ones to diethylenetriamine-tetracetic acid (DTPA, Talspeak proceeding). The third phase phenomenon was encountered and studied. Influence of salt, pH and organic phase were also studied. (author)

Abstract (French)

Le but de ce travail est la synthese de Iigands incinerables capables de separer les elements '4f' et '5f' par extraction liquide/liquide. Dans une premiere partie, une etude bibliographique a permis de preciser la nature des ions metalliques aseparer et les differentes techniques offertes par la chimie organique pour separer deux ions. Le nombre de coordination eleve de ces cations trivalents nous a dirige vers des Iigands tripodands aux sites durs propres a la complexation. Il est par contre apparu que le phenomene de separation est observe principalement en presence des groupements pyridine et carboxylato. Dans une seconde partie, une soixantaine de Iigands repartis dans differentes familles ont ete synthetises. Au sein de ces sous-familles, un parametre structural varie (nature du site, distance entre les sites sur un meme bras, orientation respective des sites, lipophilie, rigidite du site). Le 2,2-dihydroxymethyldodecanol et le l,3,5-tri(chlorocarbonyl) benzene ont ete choisis comme pivots. Les reactions de O-alkylation et d'amidation ont donc ete tout particulierement considerees a partir de ces substrats. La technique de Rekker a ete mise en pratique pour etablir une correlation structure-activite. Dans une troisieme partie, des essais sur des effluents radioactifs dopes en 152Eu et 241Am ont mis en evidence les capacites d'extraction et de separation de ces Iigands. Differents modes operatoires ont ete developpes selon que le ligand est soluble dans la phase aqueuse ou dans la phase organique. Les derives liposolubles ont ete compares au DCH18C6, les derives pyridines a la 2,4,6-tri(2-pyridyl)-l,3,5-triazine (TPTZ) et les derives carboxylato a l'acide diethylenetriaminopentaacetique (DTPA, procede TALSPEAK). Le phenomene de troisieme phase a ete rencontre et etudie ainsi que l'influence du sel de fond, du pH et du solvant organique, choisi. (auteur)

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Additional details

Additional titles

Original title (French)
Conception, synthese et application de ligands tripodands a la separation actinide/lanthanide

Publishing Information

Imprint Pagination
192 p.
Report number
FRCEA-TH--6882

Optional Information

Notes
136 refs.; Available from the INIS Liaison Officer for France, see the 'INIS contacts' section of the INIS website for current contact and E-mail addresses: http://www.iaea.org/inis/Contacts/