Murielle Bertrand
United States Atomic Energy Commission
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Chemical engineering transactions | 2015
Jean-Philippe Gaillard; Sophie Lalleman; Murielle Bertrand; Edouard Plasari
Oxalic precipitation is usually used in nuclear industry to process radioactive wastes and recover actinides from a multi-component solution. To facilitate the development of experimental methods and data acquisitions, actinides are often simulated using lanthanides, thereby gaining experience in harmless conditions. Precipitation reactions being highly sensitive to many operation parameters, modelling appear to be a very effective tool to predict the evolutions of the system under various operating conditions, especially in nuclear environment in which experiments are limited. The aim of this article is to describe the modelling approach of neodymium oxalate precipitation in a continuous MSMPR (Mixed Suspension Mixed Product Removal). Primary nucleation, crystal growth and agglomeration are taken into account in the model. Thermodynamic effects are modelled through activity coefficients which are calculated using the Bromley model. For the nucleation study, experimental runs have been performed in a specific device that allows a micromixing time less than a millisecond. The homogeneous nucleation rate follows the Volmer-Weber equation. The crystal growth rate is first order with respect to the supersaturation and controlled by the surface integration into the crystal lattice according to a screw dislocation mechanism. The agglomeration kernel has been found to be independent of the crystal size. The population balance of the particulate suspension is solved by the method of classes. The particle sizes predicted by the model are in good agreement with the experimental measurements.
Journal of Crystal Growth | 2012
Sophie Lalleman; Murielle Bertrand; Edouard Plasari
Chemical Engineering Journal | 2016
Murielle Bertrand; Nicolas Lamarque; Olivier Lebaigue; Edouard Plasari; Frédéric Ducros
CrystEngComm | 2013
Séverine Planteur; Murielle Bertrand; Edouard Plasari; Bruno Courtaud; Jean-Philippe Gaillard
International Journal of Chemical Engineering | 2012
Murielle Bertrand; Delphine Parmentier; Olivier Lebaigue; Edouard Plasari; Frédéric Ducros
Crystal Structure Theory and Applications | 2013
Delphine Parmentier; Murielle Bertrand; Edouard Plasari; Pascal Baron
Procedia Chemistry | 2012
Séverine Planteur; Murielle Bertrand; Edouard Plasari; Bruno Courtaud; Jean-Philippe Gaillard
Procedia Chemistry | 2012
Jean-Philippe Gaillard; Murielle Bertrand; Sophie Lalleman; Pascal Baron; Pierre Olivier Lamare; Edouard Plasari
Archive | 2009
Murielle Bertrand; Stephane Grandjean; Bruno Courtaud; Frederic Auger
Nuclear Engineering and Design | 2015
Luz-Adriana Mojica-Rodriguez; Murielle Bertrand; Jean-Philippe Gaillard; Hervé Muhr; Edouard Plasari; Florent Auger; E. Brackx