Serveur d'exploration sur le LRGP

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R. David And NotRégime transitoire

List of bibliographic references

Number of relevant bibliographic references: 21.
Ident.Authors (with country if any)Title
000A26 I. Houcine [France] ; E. Plasari [France] ; R. David [France]Effects of the stirred tank's design on power consumption and mixing time in liquid phase
000B32 H. Muhr [France] ; J. P. Leclerc [France] ; R. David [France]Fluorescent UV dye : A particularly well-suited tracer to determine residence time distributions of liquid phase in large industrial reactors
000B35 I. Houcine [Tunisie] ; E. Plasari [France] ; R. David [France] ; Jacques Villermaux [France]Feedstream jet intermittency phenomenon in a continuous stirred tank reactor
000B82 H. Muhr [France] ; J. P. Leclerc [France] ; R. David [France] ; J. M. Bossoutrot [France] ; F. Garcia [France]Le colorant U.V. : Un traceur particulièrement bien adapté à la détermination de distributions de temps de séjour dans des réacteurs industriels de grande dimension
000D01 R. David [France] ; N. Sumian [France] ; E. Plasari [France] ; Jacques Villermaux [France]Etude cinétique de la dissolution réactive d'oxyde de calcium dans l'eau suivie ou non de la recristallisation de l'hydroxyde
000E21 I. Houcine [France] ; H. Vivier [France] ; E. Plasari [France] ; R. David [France] ; Jacques Villermaux [France]Planar laser induced fluorescence technique for measurements of concentration fields in continuous stirred tank reactors
000E39 H. Muhr [France] ; R. David [France] ; Jacques Villermaux [France] ; P. H. Jezequel [France]Crystallization and precipitation engineering. VI: Solving population balance in the case of the precipitation of silver bromide crystals with high primary nucleation rates by using the first order upwind differentiation
000E40 R. David [France] ; J.-M. Bossoutrot [France]Crystallization and precipitation engineering-VII. The modelling of sodium perborate tetrahydrate crystallization from solution
000F05 R. David [France] ; P. Marchal [France] ; B. Marcant [France]Modelling of agglomeration in industrial crystallization from solution
000F25 H. Muhr [France] ; R. David [France] ; Jacques Villermaux [France] ; P. H. Jezequel [France]Crystallization and precipitation engineering. V: Simulation of the precipitation of silver bromide octahedral crystals in a double-jet semi-batch reactor
000F56 R. David [France] ; B. Marcant [France]Prediction of micromixing effects in precipitation : case of double-jet precipitators
001012 M. M. Clark [États-Unis] ; R. M. Srivastava [États-Unis] ; R. David [France]Mixing and aluminum precipitation
001065 R. David [France] ; H. Muhr ; Jacques Villermaux [France]The yield of consecutive-competitive reaction in a double jet semi-batch reactor : comparison between experiments and a multizone mixing model
001106 C. Andre [France] ; R. David ; J.-C. Andre [France] ; Jacques Villermaux [France]A new fluorescence method for measuring cross-fluctuations of two non-reactive components in a mixing device
001153 B. Marcant [France] ; R. DavidExperimental evidence for and prediction of micromixing effects in precipitation
001161 R. David [France] ; Jacques Villermaux [France] ; P. Marchal ; J.-P. KleinCrystallization and precipitation engineering. IV, Kinetic model of adipic acid crystallization
001162 R. David ; P. Marchal ; J.-P. Klein ; Jacques Villermaux [France]Crystallization and precipitation engineering. III, A discrete formulation of the agglomeration rate of crystals in a crystallization process
001178 R. David [France] ; J.-P. KleinPour une approche rationnelle
001261 Jacques Villermaux [France] ; R. DavidEffet du micromélange sur la précipitation
001285 R. Franck ; R. David ; Jacques Villermaux [France] ; J. P. KleinCrystallization and precipitation engineering. II: A chemical reaction engineering approach to salicylic acid precipitation ― Modelling of batch kinetics and application to continuous operation
001321 R. David ; Jacques Villermaux [France]Interpretation of micromixing effects on fast consecutive-competing reactions in semi-batch stirred tanks by a simple interaction model

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