This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a Polytechnique Montréal directory, so their courses and email address may be missing. Find their university profile.
Research
Latest papers
Thermal conductivity of molten salt mixtures: Theoretical model supported by equilibrium molecular dynamics simulations.
The Journal of chemical physics · 2016 · senior author
Latest funding
- $62,000
Thermodynamic Modelling of Critical Impurities in Molten Salts Reactors
NSERC · 2024 · Principal investigator
- $298,800
Idea to Innovation Grant (Innov IIB): Melt synthesis process and C-LMP cathode powder manufacturing optimization for end use
NSERC · 2023 · Co-investigator
- $1,132,429
Thermodynamic and physical property models for the production of greener aluminum alloys
NSERC · 2020 · Principal investigator
1 publications.
Thermal conductivity of molten salt mixtures: Theoretical model supported by equilibrium molecular dynamics simulations.
Gheribi AE, Chartrand P
Thermodynamic Modelling of Critical Impurities in Molten Salts Reactors
Principal investigators: Chartrand, Patrice
Keywords: molten salts; molten salt nuclear reactors; thermodynamic modeling; calphad method; multicomponent systems; impurities; solubility of gases; solubility of carbides, borides, tetrafluoroborates; electrolysis and electrochemical refining; reducing, neutral and oxidizing conditions
Idea to Innovation Grant (Innov IIB): Melt synthesis process and C-LMP cathode powder manufacturing optimization for end use
Principal investigators: Dollé, Mickael M
Keywords: cathode active material; energy storage; lifepo4; lithium batteries; mining; process optimization; strategic minerals; supply chain
Thermodynamic and physical property models for the production of greener aluminum alloys
Principal investigators: Chartrand, Patrice P
Keywords: co2 reduction; greener liquid metal processing; high entropy al alloys; new aluminum alloys; physical property models; primary aluminum production; reduced carbon consumption; thermodynamic models
Thermodynamic models for metal-salt-oxide liquid solutions
Principal investigators: Chartrand, Patrice
Keywords: CALPHAD-based approach; Electrical conductivity; Liquid solutions; Metal-salt-oxide miscibility; Physical properties; Process modeling; Simulation package; Thermodynamic models
Computational Thermodynamics for High Temperature Sustainable Processes
Principal investigators: Chartrand, Patrice
Computational Thermodynamics for High Temperature Sustainable Processes
Principal investigators: Chartrand, Patrice
Kinetics of alumina dissolution in aluminium electrolysis cells
Principal investigators: Kiss, Laszlo
Computational Thermodynamics for High Temperature *Sustainable Processes
Principal investigators: Chartrand, Patrice
Searching for new Sn-Ag-Cu based lead free solders with low melting temperature using a thermodynamic modeling method
Principal investigators: Chartrand, Patrice
Fundamental models to support efficient aluminum alloys production
Principal investigators: Chartrand, Patrice
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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