Hydrogen release during pyrolysis of woody biomass is studied considering anisotropicity and inhomogeneity of wood structure. A new anisotropic shrinkage model is proposed based on the decomposition of main wood constituents, i.e., cellulose, hemicellulose, and lignin. The new shrinkage model can predict the temporal evolution of the wood structure, and the differences between axial and radial shrinkage during pyrolysis. The model agrees very well with several experimental data from the literature. Based on particle temperature during conversion, the pyrolysis is partitioned into four stages, and the hydrogen release and H2 formation from each stage are investigated. Stage (IV) of pyrolysis, from 1000 to 1273 K, is found to be efficient for...
This paper presents a simplified model for prediction of pyrolysis of a biomass particle. The main a...
Producing hydrogen from biomass via pyrolysis is a promising solution to meet the increasing demand ...
The numerical simulation of fire propagation requires capturing the coupling between wood pyrolysis,...
International audienceThe pyrolysis of wood was carried out in an Entrained Flow Reactor at high tem...
A detailed mathematical model is developed for simulation of heat and mass transfer processes during...
Pyrolysis is an important phenomenon in combustion of wood and the successful modelling of pyrolysis...
Wood is an interesting alternative to fossil fuels. It is CO2-neutral and widely available. However ...
International audienceMild pyrolysis, operated at 200-300 degrees C in an inert atmosphere, is a pro...
Biomass is a suitable energy source to reduce the carbon footprint and increase the use of renewable...
A detailed mathematical model is presented for the temporal and spatial accurate modeling of solid-f...
Devolatilization is an important mechanism in the gasification and pyrolysis of woody biomass, and h...
Reactors for flash pyrolysis of biomass are designed to maximize the yield of bio-oil, at the expens...
Pyrolysis of centimeter-scale wood particles is of practical interest and provides a sensitive test ...
This paper presents a simplified model for prediction of pyrolysis of a biomass particle. The main a...
Producing hydrogen from biomass via pyrolysis is a promising solution to meet the increasing demand ...
The numerical simulation of fire propagation requires capturing the coupling between wood pyrolysis,...
International audienceThe pyrolysis of wood was carried out in an Entrained Flow Reactor at high tem...
A detailed mathematical model is developed for simulation of heat and mass transfer processes during...
Pyrolysis is an important phenomenon in combustion of wood and the successful modelling of pyrolysis...
Wood is an interesting alternative to fossil fuels. It is CO2-neutral and widely available. However ...
International audienceMild pyrolysis, operated at 200-300 degrees C in an inert atmosphere, is a pro...
Biomass is a suitable energy source to reduce the carbon footprint and increase the use of renewable...
A detailed mathematical model is presented for the temporal and spatial accurate modeling of solid-f...
Devolatilization is an important mechanism in the gasification and pyrolysis of woody biomass, and h...
Reactors for flash pyrolysis of biomass are designed to maximize the yield of bio-oil, at the expens...
Pyrolysis of centimeter-scale wood particles is of practical interest and provides a sensitive test ...
This paper presents a simplified model for prediction of pyrolysis of a biomass particle. The main a...
Producing hydrogen from biomass via pyrolysis is a promising solution to meet the increasing demand ...
The numerical simulation of fire propagation requires capturing the coupling between wood pyrolysis,...