Faculty profile
Raphael Idem
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Research
Latest papers
Development of a Predictive Model to Correlate the Chemical Structure of Amines with Their Oxidative Degradation Rate in a Post-Combustion Amine-Based CO2 Capture Process Using Multiple Linear Regression and Machine Learning Regression Approaches.
ACS omega · 2024 · senior author
Development of experimental error-Driven model for prediction of corrosion rates of amines based on their chemical structures.
Heliyon · 2023 · senior author
Nitrosamine Formation in Amine-Based CO2 Capture in the Absence of NO2: Molecular Modeling and Experimental Validation.
Environmental science & technology · 2017
Latest funding
- $192,000
Towards Achieving Zero Emissions through the use of an Environmentally Benign Non-Regenerable Solvent to Capture CO2 from Large Point Source Emitters for Direct Permanent Storage in Geological Formation or Usage in Accelerated Curing of Ready-mix Concrete
NSERC · 2022 · Principal investigator
- $280,000
Development and Improvement of Reactive Solvents, Catalysts and Additives for Prevention of Nitrosamine Formation, Solvent Degradation and Catalyst Deactivation for Improved Performance of Catalyst-Aided Amine-Based CO2 Capture Process
NSERC · 2015 · Principal investigator
- $418,500
Novel energy efficient, amine-based catalyst-aided method for capture of carbon dioxide from fossil fuel-based industrial exhaust gas streams
NSERC · 2012 · Principal investigator
3 publications.
Development of a Predictive Model to Correlate the Chemical Structure of Amines with Their Oxidative Degradation Rate in a Post-Combustion Amine-Based CO2 Capture Process Using Multiple Linear Regression and Machine Learning Regression Approaches.
Muchan P, Kruthasoot S, Kongton T, Supap T, Narku-Tetteh J, Lisawadi S, Srisuradetchai P, Idem R
Development of experimental error-Driven model for prediction of corrosion rates of amines based on their chemical structures.
Narku-Tetteh J, Mensah E, Muchan P, Supap T, Lisawadi S, Idem R
Nitrosamine Formation in Amine-Based CO2 Capture in the Absence of NO2: Molecular Modeling and Experimental Validation.
Shi H, Supap T, Idem R, Gelowitz D, Campbell C, Ball M
Towards Achieving Zero Emissions through the use of an Environmentally Benign Non-Regenerable Solvent to Capture CO2 from Large Point Source Emitters for Direct Permanent Storage in Geological Formation or Usage in Accelerated Curing of Ready-mix Concrete
Principal investigators: Idem, Raphael
Keywords: environmentally benign solvent; heterogeneous catalyst-aided absorption; benign solvent-assisted co2 sequestration; regeneration cost elimination; large point source emitters; concrete curing; rate of co2 absorption enhancement; accelerated concrete carbonation; permanent geological storage of co2; net-zero co2 emission
Development and Improvement of Reactive Solvents, Catalysts and Additives for Prevention of Nitrosamine Formation, Solvent Degradation and Catalyst Deactivation for Improved Performance of Catalyst-Aided Amine-Based CO2 Capture Process
Principal investigators: Idem, Raphael
Novel energy efficient, amine-based catalyst-aided method for capture of carbon dioxide from fossil fuel-based industrial exhaust gas streams
Principal investigators: Idem, Raphael
Automobile of the 21st Century/L'automobile du XXIe siècle
Principal investigators: Frise, Peter
Development of a common corrosion and degradation inhibitor additive for formulation of a novel energy efficient solvent for carbon dioxide capture from industrial gas streams
Principal investigators: Idem, Raphael
Thermal and elemental analyzer for the pyrolysis and gasification of biomasses
Principal investigators: Mahinpey, Nader
Automobile of the 21st Century/L'automobile du XXIe siècle
Principal investigators: Frise, Peter
NSERC Hydrogen Canada (H2CAN) Strategic Research Network
Principal investigators: Chahine, Richard
Hydrogen production by the catalytic reforming of non-food biomass-derived crude mixtures of liquid oxygenated hydrocarbons with carbon dioxide capture
Principal investigators: Idem, Raphael
CO2 capture from coal fired power plant flue gases using formulated amines: degredation prevention studies
Principal investigators: Idem, Raphael
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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