prof. dr. ir. Mark Saeys
- ORCID iD
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0000-0002-3426-6662
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- Conference Paper
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e-SAF: Innovative Process Integration for CO2 Conversion to Sustainable Aviation Fuels
(2026) -
Reaction pathways to CO and methanol in CO2 hydrogenation over ZnxZrOy catalysts
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Role of crowded surfaces in microkinetic modeling of CO2 methanation on nickel
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Accounting for the footprints of bulky molecules in multi-site kinetic models
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Role of crowded surfaces in microkinetic models of COx hydrogenation
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CO2 methanation over nickel : a kinetic balancing act between CO2 and CO activation
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First-principles analysis of the phase-dependent surface and nanoparticle energetics of ZrO₂ under reaction conditions
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Multiscale modeling and experimentation
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Supplementary data for 'Role of crowded surfaces in microkinetic modeling of CO2 methanation on nickel'
(2025) -
Supplementary data and microkinetic model for 'Key Role of CO Coverage for Chain Growth in Co-Based Fischer-Tropsch Synthesis'
(2025)