Faculty profile
Martin Désilets
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Research
Latest funding
- $300,001
Lithium Aging Mechanisms and Modeling (LiAMM)
NSERC · 2023 · Co-investigator
- $229,778
Optimization of a CO2 electrochemical conversion process - electrochemical production and product recovery
NSERC · 2022 · Co-investigator
- $231,000
Development of intelligent sensors for the prediction of the transient thermal and thermochemical states of industrial aluminium electrolysis cells
NSERC · 2022 · Principal investigator
Lithium Aging Mechanisms and Modeling (LiAMM)
Principal investigators: Veilleux, Jocelyn J
Keywords: aging mechanisms; all-solid-state battery; industrial vehicle; lithium ion-battery; modeling; post-mortem analysis; recreational vehicle
Optimization of a CO2 electrochemical conversion process - electrochemical production and product recovery
Principal investigators: Rego de Vasconcelos, Bruna B
Keywords: co2 electrochemical reduction; de-icing applications; electrochemical cell; formate/formic acid production; mass transfer; power-to-x; process optmization; product recovery; separation process; storage of renewable electricity
Development of intelligent sensors for the prediction of the transient thermal and thermochemical states of industrial aluminium electrolysis cells
Principal investigators: Désilets, Martin M
Keywords: aluminum electrolysis cells; continuous temperature sensor; control algorithms; intelligent sensors; process measurements; real-time diagnosis; reduced models; thermal and chemical states; time-varying operating conditions; transient mathematical models
Electrochemical platform for the characterization of biosensors, advanced materials and environmental samples
Principal investigators: Dauphin Ducharme, Philippe
Real-time Lithium-ion (Li-ion) battery state estimation based on electro-thermal model
Principal investigators: Désilets, Martin
Keywords: Battery Management System; Electricity storage; Electrode degradation and aging; Experimental validation; Extended Kalman Filter; Li-ion Battery (LIB); Multi-physic battery model; Simulation of the LIB behavior; State-Of-Charge; State-Of-Health
Side ledge formation in aluminum electrolysis cells - influence of the operating conditions and the heat losses distribution of the transient thermal response
Principal investigators: Désilets, Martin
Modélisation numérique du transfert de masse et de chaleur dans un réacteur métallurgique utilisé pour la production de ferroniobium
Principal investigators: Désilets, Martin
Formation mechanism and redissolution of cathode deposits and their influences on the cathodic voltage drop (CVD) in aluminum electrolysis process
Principal investigators: Soucy, Gervais
Développement de procédés à haute efficacité énergétique pour la production de métaux à haute valeur ajoutée
Principal investigators: Désilets, Martin
Optimisation thermique et hydrodynamique d'un caloduc utilisé dans un échangeur de chaleur industriel
Principal investigators: Désilets, Martin
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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