Abstract
This paper deals with the extraction cycles design for La Hague plants. The work has consisted in basic laboratory studies with elaboration of computer models and their subsequent uses in flowsheet optimized design. To highlight this work, the case of UP3 plant was selected. Several major points are presented here: - technetium behavior in the first purification cycle, -plutonium behavior in the plutonium purification cycles, - neptunium behavior in the uranium purification cycles. The good operating results of the first years of UP3 are solid proofs of the validity of the overall approach in flowsheet design. (author). 4 tabs., 3 figs., 27 refs., 19 posters.
Baron, P;
Boullis, B;
Germain, M;
Gue, J P;
[1]
Miquel, P;
Poncelet, F J;
[2]
Dormant, J M;
Dutertre, F
[3]
- CEA Centre d`Etudes de la Vallee du Rhone, 30 - Marcoule (France). Dept. des Procedes de Retraitement
- Societe Generale pour les Techniques Nouvelles (SGN), 78 - Saint-Quentin-en-Yvelines (France)
- Compagnie Generale des Matieres Nucleaires (COGEMA), 50 - Cherbourg (France). Etablissement de La Hague
Citation Formats
Baron, P, Boullis, B, Germain, M, Gue, J P, Miquel, P, Poncelet, F J, Dormant, J M, and Dutertre, F.
Extraction cycles design for La Hague plants.
France: N. p.,
1993.
Web.
Baron, P, Boullis, B, Germain, M, Gue, J P, Miquel, P, Poncelet, F J, Dormant, J M, & Dutertre, F.
Extraction cycles design for La Hague plants.
France.
Baron, P, Boullis, B, Germain, M, Gue, J P, Miquel, P, Poncelet, F J, Dormant, J M, and Dutertre, F.
1993.
"Extraction cycles design for La Hague plants."
France.
@misc{etde_10139247,
title = {Extraction cycles design for La Hague plants}
author = {Baron, P, Boullis, B, Germain, M, Gue, J P, Miquel, P, Poncelet, F J, Dormant, J M, and Dutertre, F}
abstractNote = {This paper deals with the extraction cycles design for La Hague plants. The work has consisted in basic laboratory studies with elaboration of computer models and their subsequent uses in flowsheet optimized design. To highlight this work, the case of UP3 plant was selected. Several major points are presented here: - technetium behavior in the first purification cycle, -plutonium behavior in the plutonium purification cycles, - neptunium behavior in the uranium purification cycles. The good operating results of the first years of UP3 are solid proofs of the validity of the overall approach in flowsheet design. (author). 4 tabs., 3 figs., 27 refs., 19 posters.}
place = {France}
year = {1993}
month = {Dec}
}
title = {Extraction cycles design for La Hague plants}
author = {Baron, P, Boullis, B, Germain, M, Gue, J P, Miquel, P, Poncelet, F J, Dormant, J M, and Dutertre, F}
abstractNote = {This paper deals with the extraction cycles design for La Hague plants. The work has consisted in basic laboratory studies with elaboration of computer models and their subsequent uses in flowsheet optimized design. To highlight this work, the case of UP3 plant was selected. Several major points are presented here: - technetium behavior in the first purification cycle, -plutonium behavior in the plutonium purification cycles, - neptunium behavior in the uranium purification cycles. The good operating results of the first years of UP3 are solid proofs of the validity of the overall approach in flowsheet design. (author). 4 tabs., 3 figs., 27 refs., 19 posters.}
place = {France}
year = {1993}
month = {Dec}
}