In the present study, a numerical approach to describe the pyrolysis of a single solid particle of wood is used to study the influence of various conditions such as particle size, heat transfer coefficient, reactor temperature and heating rate. The influence of these parameters in the change of the duration of the pyrolysis cycle was studied. Mathematical modeling was employed to simulate the heat, mass transfer, and kinetic processes inside the reactor. The evolutions of the mass loss as well as the evolution of temperature inside the thick piece are investigated numerically. The elaborated model was also employed to study the effect of the reactor temperature and the rate of heating on the change of the temperature and the local loss of t...
This paper reports the main findings of the first phase of our ongoing research on numerical study o...
Pyrolysis is an important phenomenon in combustion of wood and the successful modelling of pyrolysis...
A detailed mathematical model is developed for simulation of heat and mass transfer processes during...
Wood is an interesting alternative to fossil fuels. It is CO2-neutral and widely available. However ...
This paper presents a simplified model for prediction of pyrolysis of a biomass particle. The main a...
The aim of this work is to analyze some new experimental data of pyrolysis of thick woody biomass pa...
In the present study, a mathematical model to describe the pyrolysis of a single solid particle of...
A detailed mathematical model is presented for the temporal and spatial accurate modeling of solid-f...
Temperature profiles inside a large pyrolysing particle were studied and are reported in this paper....
11th International Conference on Chemical and Process Engineering (ICheaP), Milan, ITALY, JUN 02-05,...
Predicting pyrolytic conversion of larger particles of wood (thermally thick regime) is a complex ta...
This paper reports the main findings of the first phase of our ongoing research on numerical study o...
Pyrolysis is an important phenomenon in combustion of wood and the successful modelling of pyrolysis...
A detailed mathematical model is developed for simulation of heat and mass transfer processes during...
Wood is an interesting alternative to fossil fuels. It is CO2-neutral and widely available. However ...
This paper presents a simplified model for prediction of pyrolysis of a biomass particle. The main a...
The aim of this work is to analyze some new experimental data of pyrolysis of thick woody biomass pa...
In the present study, a mathematical model to describe the pyrolysis of a single solid particle of...
A detailed mathematical model is presented for the temporal and spatial accurate modeling of solid-f...
Temperature profiles inside a large pyrolysing particle were studied and are reported in this paper....
11th International Conference on Chemical and Process Engineering (ICheaP), Milan, ITALY, JUN 02-05,...
Predicting pyrolytic conversion of larger particles of wood (thermally thick regime) is a complex ta...
This paper reports the main findings of the first phase of our ongoing research on numerical study o...
Pyrolysis is an important phenomenon in combustion of wood and the successful modelling of pyrolysis...
A detailed mathematical model is developed for simulation of heat and mass transfer processes during...