This study aims to investigate the hydrotreatment of bio-oil in a continuous packed-bed reactor at around 375°C and 70 bar. The bio-oil was produced from the grinding pyrolysis of mallee wood in a grinding pyrolysis pilot plant. Our results indicate that the lighter and heavier components in the same bio-oil could behave very differently. Their behaviour can be affected very significantly by the overall bio-oil liquid hourly space velocity. While the residence time of the light species that evaporate instantly could be very short, the residence time of heavy species passing through the catalyst bed in the form of liquid could be very long. When a commercial pre-sulphided NiMo/Al2O3 catalyst came into contact with the heavy bio-oil species, ...
Development of alternate energy sources is needed to fulfil the global energy demands that have been...
Fast pyrolysis technology is currently moving forward to commercialization, and demonstration plants...
Fast pyrolysis technology is currently moving forward to commercialization, and demonstration plants...
This study aims to investigate the hydrotreatment of bio-oil in a continuous packed-bed reactor at a...
This study aims to investigate the hydrotreatment of bio-oil in a continuous packed-bed reactor at a...
This study has investigated the observed product distribution as a function of temperature and liqui...
In this study, we investigated the effects of temperature on the hydrotreatment behaviour of bio-oil...
Bio-oil derived by fast pyrolysis of biomass represents a potentially attractive source of hydrocarb...
This study has investigated the hydrotreatment of bio-oil (derived from the fast pyrolysis of mallee...
This paper reports the effects of hydrogen and bio-oil inlet temperature on the coke formation and p...
Catalytic hydroprocessing has been applied to the fast pyrolysis liquid product (bio-oil) from softw...
Catalytic hydroprocessing has been applied to the fast pyrolysis liquid product (bio-oil) from softw...
Biomass-based fast pyrolysis bio-oil is a low-quality liquid product that is unsuitable for use as t...
Biomass is the only renewable resource that can be used to produce liquid fuels. The pyrolysis of bi...
Development of alternate energy sources is needed to fulfil the global energy demands that have been...
Development of alternate energy sources is needed to fulfil the global energy demands that have been...
Fast pyrolysis technology is currently moving forward to commercialization, and demonstration plants...
Fast pyrolysis technology is currently moving forward to commercialization, and demonstration plants...
This study aims to investigate the hydrotreatment of bio-oil in a continuous packed-bed reactor at a...
This study aims to investigate the hydrotreatment of bio-oil in a continuous packed-bed reactor at a...
This study has investigated the observed product distribution as a function of temperature and liqui...
In this study, we investigated the effects of temperature on the hydrotreatment behaviour of bio-oil...
Bio-oil derived by fast pyrolysis of biomass represents a potentially attractive source of hydrocarb...
This study has investigated the hydrotreatment of bio-oil (derived from the fast pyrolysis of mallee...
This paper reports the effects of hydrogen and bio-oil inlet temperature on the coke formation and p...
Catalytic hydroprocessing has been applied to the fast pyrolysis liquid product (bio-oil) from softw...
Catalytic hydroprocessing has been applied to the fast pyrolysis liquid product (bio-oil) from softw...
Biomass-based fast pyrolysis bio-oil is a low-quality liquid product that is unsuitable for use as t...
Biomass is the only renewable resource that can be used to produce liquid fuels. The pyrolysis of bi...
Development of alternate energy sources is needed to fulfil the global energy demands that have been...
Development of alternate energy sources is needed to fulfil the global energy demands that have been...
Fast pyrolysis technology is currently moving forward to commercialization, and demonstration plants...
Fast pyrolysis technology is currently moving forward to commercialization, and demonstration plants...