Faculty profile
Inès Achouri
Back to facultyThis profile is built from public research funding records (CIHR, NSERC and SSHRC). We have not imported them from a Université de Sherbrooke directory, so their publications, courses and email address may be missing. Find their university profile.
Research
Latest funding
- $730,000
Revolutionizing Construction Waste: Autothermal Pyrolysis for Sustainable fuel and biochar
NSERC · 2025 · Principal investigator
- $180,000
Production d'hydrogène industriel sans GES (PHIG) INNOVIIb
NSERC · 2022 · Co-investigator
- $12,500
Energy efficient approaches for sustainable fuels
NSERC · 2022 · Principal investigator
Revolutionizing Construction Waste: Autothermal Pyrolysis for Sustainable fuel and biochar
Principal investigators: Achouri, Inès Esma
Keywords: Energy resources (including production, exploration, processing, distribution and use); Waste, waste management and recycling
Production d'hydrogène industriel sans GES (PHIG) INNOVIIb
Principal investigators: Abatzoglou, Nicolas N
Keywords: filament de carbone; lit fluidisé; noir de carbone; plasma thermique; production d'hydrogène industriel; pyrolyse autothermique; recyclage de déchets de plastiques; reformage à sec ou au co2; séquestration de carbone; zéro émission de gaz effet de serre
Energy efficient approaches for sustainable fuels
Principal investigators: Achouri, Inès Esma
Valorisation de biomasse résiduelle par procédés intensifiés pour la production de biocarburants et de produits biosourcés
Principal investigators: Achouri, Inès Esma IE
Keywords: biocarburant; bio-catalyseur; biogaz; biomasse résiduelle; fermentation; reformage à la vapeur; reformage à sec
Energy efficient approaches for sustainable fuels
Principal investigators: Achouri, Inès Esma
Keywords: process intensification; catalysis; methane; dry reforming; platform molecules; alternative energy
New catalysts and process for the synthesis of sustainable aviation fuels derived from biomass resources
Principal investigators: Abatzoglou, Nicolas
Keywords: Thermocatalytic processes; Heterogeneous catalysis ; Reactor engineering; Divided solids ; Sustainable fuels; Process intensification; Powders handling processes; Biomass conversion; Gasification; Pyrolysis
Process Intensification for Advanced Catalysts and Sustainable Energy
Principal investigators: Achouri, Inès Esma
Keywords: Process intensification; catalysis; multifunctional catalyst; dry ; reforming; energy efficiency; carbon dioxide hydrogenation; ; non-thermal plasma
Combined inorganic contaminants capture through autothermal pyrolysis and clean biofuel production through reforming and Fischer-Tropsch Synthesis
Principal investigators: Abatzoglou, Nicolas
Combined inorganic contaminants capture through autothermal pyrolysis and clean biofuel production through reforming and Fischer-Tropsch Synthesis
Principal investigators: Abatzoglou, Nicolas
Keywords: Biomass Pyrolysis Autothermal Reforming Fischer-Tropsch Synthesis Catalytic reactors Heterogeneous Catalyst Fluidized bed Thermal Conversion Process Engineering
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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