Understanding the deactivation of transition-metal carbide catalysts during hydrodeoxygenation (HDO) reactions is of great importance for improving the production of the second generation fuels from biomass. Based on a combined experimental and theoretical study, we present a mechanistic model for the deactivation of molybdenum carbide catalysts during phenol HDO in the presence of water. At increased water pressure, water molecules preferentially bind to the surface, and active sites are no longer accessible for phenol. In line with first principle calculations, experiments reveal that this process is fully reversible because the reduction of the water partial pressure results in a threefold increase in conversion. The direct deoxygenation...
Mo₂C catalysts supported on carbon have been investigated for use in hydrotreating reactions that re...
The effect of the gas-phase chemical potential on surface chemistry and reactivity of molybdenum car...
International audienceThe hydrodeoxygenation of model phenol compounds (phenol and 2-ethylphenol) wa...
Understanding the deactivation of transition-metal carbide catalysts during hydrodeoxygenation (HDO)...
International audienceWe report the study of the impact of water on the stability of Mo and CoMo sul...
Molybdenum carbides are considered as promising replacements for expensive noble metal catalysts in ...
A mechanistic understanding of the roles of water is essential for developing highly active and sele...
Among all catalytic natural gas valorization processes, methane dehydroaromatization (MDA) still has...
Density functional theory is used to investigate the origins of the excellent catalytic activity of ...
The dehydrogenation and dehydration of formic acid is investigated on the β-Mo2C (100) catalyst surf...
Mo₂C catalysts supported on carbon have been investigated for use in hydrotreating reactions that re...
The effect of the gas-phase chemical potential on surface chemistry and reactivity of molybdenum car...
International audienceThe hydrodeoxygenation of model phenol compounds (phenol and 2-ethylphenol) wa...
Understanding the deactivation of transition-metal carbide catalysts during hydrodeoxygenation (HDO)...
International audienceWe report the study of the impact of water on the stability of Mo and CoMo sul...
Molybdenum carbides are considered as promising replacements for expensive noble metal catalysts in ...
A mechanistic understanding of the roles of water is essential for developing highly active and sele...
Among all catalytic natural gas valorization processes, methane dehydroaromatization (MDA) still has...
Density functional theory is used to investigate the origins of the excellent catalytic activity of ...
The dehydrogenation and dehydration of formic acid is investigated on the β-Mo2C (100) catalyst surf...
Mo₂C catalysts supported on carbon have been investigated for use in hydrotreating reactions that re...
The effect of the gas-phase chemical potential on surface chemistry and reactivity of molybdenum car...
International audienceThe hydrodeoxygenation of model phenol compounds (phenol and 2-ethylphenol) wa...