A comprehensive particle scale model for pyrolysis of biomass has been developed by coupling the reaction mechanisms and transport phenomena. The model, which also accounts for the combined effect of various parameters such as particle shrinkage and drying, was validated using available experimentaldata from the literature. The validated model was then used to study the effect of operating temperature and biomass particle size, both of which strongly influenced the rate of biomass conversion. For example, for particle sizes less than 1 mm, a uniform temperature throughout the particle was predicted, thus leading to higher conversion rates in comparison to those in the larger particles. On the other hand, any increase in moisture content led...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
In this study, a coupled transport and chemical kinetic model was used to simulate the effects of bi...
This PhD thesis presents the work carried out by kinetic modeling incorporated with particle simulat...
Thermo-chemical decomposition of biomass to bio-energy via pyrolysis is a complex process. Several p...
Many phenomena affect devolatilization of biomass particles, including mass and heat transfer, chemi...
Many phenomena affect devolatilization of biomass particles, including mass and heat transfer, chemi...
Thermo-chemical decomposition of biomass to bio-energy via pyrolysis is a complex process. Several p...
A detailed two-dimensional numerical model for biomass pyrolysis has been developed. The model solve...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
© 2015 Elsevier Ltd. All rights reserved. Biomass as a form of energy source may be utilized in two ...
Energy generation and platform chemicals production from biomass are a potential route towards an oi...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
In comparison to coal, biomass is characterized by a higher content of volatile matter. It is a rene...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
In this study, a coupled transport and chemical kinetic model was used to simulate the effects of bi...
This PhD thesis presents the work carried out by kinetic modeling incorporated with particle simulat...
Thermo-chemical decomposition of biomass to bio-energy via pyrolysis is a complex process. Several p...
Many phenomena affect devolatilization of biomass particles, including mass and heat transfer, chemi...
Many phenomena affect devolatilization of biomass particles, including mass and heat transfer, chemi...
Thermo-chemical decomposition of biomass to bio-energy via pyrolysis is a complex process. Several p...
A detailed two-dimensional numerical model for biomass pyrolysis has been developed. The model solve...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
© 2015 Elsevier Ltd. All rights reserved. Biomass as a form of energy source may be utilized in two ...
Energy generation and platform chemicals production from biomass are a potential route towards an oi...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
In comparison to coal, biomass is characterized by a higher content of volatile matter. It is a rene...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
In this study, a coupled transport and chemical kinetic model was used to simulate the effects of bi...
This PhD thesis presents the work carried out by kinetic modeling incorporated with particle simulat...