Apricot kernel shells are naturally available source of biomass with potential for conversion to clean energy through a thermo-chemical process such as pyrolysis. To facilitate further process development, an advanced mathematical model which represents the process kinetics is developed and validated on the thermal decomposition studies using simultaneous thermal analysis, over a temperature range of 30-900 degrees C, at four heating rates of 5, 10, 15 and 20 degrees C min(-1), under argon atmosphere. Model-free analysis and numerically developed methods were utilized for determination of effective activation energies, pre-exponential factors and the fractional contribution. A novel approach is introduced in order to determine actual pseudo...
This paper presents a novel kinetic reaction model for biomass pyrolysis processes. The model is bas...
The thermal decomposition of lignocellulosic biomass materials and their major components is discuss...
Biomass pyrolysis process from a drop tube reactor was modelled in a plug flow reactor using Aspen P...
Apricot kernel shells are naturally available source of biomass with potential for conversion to cle...
In order to clarify relationship between apricot kernel shell biomass slow pyrolysis mechanism and i...
The detailed kinetic analysis of slow pyrolysis process of apricot (Prunus armeniaca L.) kernal shel...
As waste biomass from fruit processing industry, apricot kernel shells have a potential for conversi...
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isother...
ÖZETBu çalışmada, biyokütle atık maddesi olarak kayısı çekirdeği ile piroliz çalışması gerçekleştiri...
Imperata cylindrica is a viable bioenergy crop with potential for conversion to clean energy through...
Many phenomena affect devolatilization of biomass particles, including mass and heat transfer, chemi...
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isother...
The pyrolysis process of thermally small biomass particles was modeled combining the Lumped Capacita...
A modification of the simplified Distributed Activation Energy Model is proposed to simulate the pyr...
Lignocellulosic biomass could be pyrolytically converted into value-added products and one of the s...
This paper presents a novel kinetic reaction model for biomass pyrolysis processes. The model is bas...
The thermal decomposition of lignocellulosic biomass materials and their major components is discuss...
Biomass pyrolysis process from a drop tube reactor was modelled in a plug flow reactor using Aspen P...
Apricot kernel shells are naturally available source of biomass with potential for conversion to cle...
In order to clarify relationship between apricot kernel shell biomass slow pyrolysis mechanism and i...
The detailed kinetic analysis of slow pyrolysis process of apricot (Prunus armeniaca L.) kernal shel...
As waste biomass from fruit processing industry, apricot kernel shells have a potential for conversi...
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isother...
ÖZETBu çalışmada, biyokütle atık maddesi olarak kayısı çekirdeği ile piroliz çalışması gerçekleştiri...
Imperata cylindrica is a viable bioenergy crop with potential for conversion to clean energy through...
Many phenomena affect devolatilization of biomass particles, including mass and heat transfer, chemi...
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isother...
The pyrolysis process of thermally small biomass particles was modeled combining the Lumped Capacita...
A modification of the simplified Distributed Activation Energy Model is proposed to simulate the pyr...
Lignocellulosic biomass could be pyrolytically converted into value-added products and one of the s...
This paper presents a novel kinetic reaction model for biomass pyrolysis processes. The model is bas...
The thermal decomposition of lignocellulosic biomass materials and their major components is discuss...
Biomass pyrolysis process from a drop tube reactor was modelled in a plug flow reactor using Aspen P...