Faculty profile
Christian Robelin
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Research
Latest papers
Greener reactants, renewable energies and environmental impact mitigation strategies in pyrometallurgical processes: A review.
MRS energy & sustainability : a review journal · 2022
Solid-liquid equilibria for a pyrrolidinium-based common-cation ternary ionic liquid system, and for a pyridinium-based ternary reciprocal ionic liquid system: an experimental study and a thermodynamic model.
Physical chemistry chemical physics : PCCP · 2017 · senior author
Latest funding
- $112,000
Modeling the thermodynamic and physical properties of Deep Eutectic Solvents
NSERC · 2021 · Principal investigator
- $1,132,429
Thermodynamic and physical property models for the production of greener aluminum alloys
NSERC · 2020 · Co-investigator
- $344,259
Fundamental models to support efficient aluminum alloys production
NSERC · 2014 · Co-investigator
2 publications.
Greener reactants, renewable energies and environmental impact mitigation strategies in pyrometallurgical processes: A review.
Harvey JP, Courchesne W, Vo MD, Oishi K, Robelin C, Mahue U, Leclerc P, Al-Haiek A
Solid-liquid equilibria for a pyrrolidinium-based common-cation ternary ionic liquid system, and for a pyridinium-based ternary reciprocal ionic liquid system: an experimental study and a thermodynamic model.
Mirarabrazi M, Stolarska O, Smiglak M, Robelin C
Modeling the thermodynamic and physical properties of Deep Eutectic Solvents
Principal investigators: Robelin, Christian
Keywords: deep eutectic solvents; hydrogen bonding; binary and ternary mixtures; calphad-based approach; thermodynamic modeling; phase diagram calculations; physical property modeling; density modeling; viscosity modeling
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
Fundamental models to support efficient aluminum alloys production
Principal investigators: Chartrand, Patrice
Modeling the thermodynamic and physical properties of mixtures of room temperature molten salts (i.e. ionic liquids)
Principal investigators: Robelin, Christian
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
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