Louis Fradette
Affiliations: | Ecole Polytechnique, Montreal (Canada) |
Area:
Chemical Engineering, Plastics TechnologyGoogle:
"Louis Fradette"
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Publications
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Avazpour R, Latifi M, Chaouki J, et al. (2020) An environmentally friendly route for beneficiation of rare earth-bearing minerals by Pickering emulsification: adjusting the interfacial and formulation parameters Green Chemistry. 22: 5771-5784 |
Delacroix B, Bouarab A, Fradette L, et al. (2020) Simulation of granular flow in a rotating frame of reference using the discrete element method Powder Technology. 369: 146-161 |
Leclaire S, Vidal D, Fradette L, et al. (2020) Validation of the pressure drop–flow rate relationship predicted by lattice Boltzmann simulations for immiscible liquid–liquid flows through SMX static mixers Chemical Engineering Research & Design. 153: 350-368 |
Sabri F, Raphael W, Berthomier K, et al. (2019) One-step processing of highly viscous multiple Pickering emulsions. Journal of Colloid and Interface Science |
Sabri F, Berthomier K, Wang C, et al. (2019) Tuning particle–particle interactions to control Pickering emulsions constituents separation Green Chemistry. 21: 1065-1074 |
Wan B, Tsabet E, Fradette L. (2019) Impact of Particles on Breakage and Coalescence Processes during the Preparation of Solid-Stabilized Emulsions Industrial & Engineering Chemistry Research. 58: 5631-5639 |
Avazpour R, Latifi M, Chaouki J, et al. (2019) Physical beneficiation of rare earth-bearing ores by Pickering emulsification Minerals Engineering. 144: 106034 |
Sabri F, Berthomier K, Marion A, et al. (2018) Sodium alginate-grafted submicrometer particles display enhanced reversible aggregation/disaggregation properties. Carbohydrate Polymers. 194: 61-68 |
Bertrand O, Blais B, Bertrand F, et al. (2018) Complementary methods for the determination of the just-suspended speed and suspension state in a viscous solid–liquid mixing system Chemical Engineering Research & Design. 136: 32-40 |
Blais B, Bertrand O, Fradette L, et al. (2017) CFD-DEM simulations of early turbulent solid–liquid mixing: Prediction of suspension curve and just-suspended speed Chemical Engineering Research and Design. 123: 388-406 |