When biomass is thermochemically processed, the size of the biomass particles affects processing time requirements and yields. This study investigates the effects of particle size at the centimeter scale on pyrolysis through both experimental and modeling approaches, with three types of woody biomass; poplar, pine sapwood, and pine heartwood. Large (<i>D</i> = 3.81 cm) and small (<i>D</i> = 2.54 cm) wood spheres were pyrolyzed under thermally thick conditions at three final pyrolysis temperatures in a reactor with turbulent gas flow; the same wood materials were also pyrolyzed in a thermogravimetric analyzer (TGA), under kinetic control. The experiments were simulated using a previously published 1-dimensional pyrolysis model, which include...
A detailed mathematical model is presented for the temporal and spatial accurate modeling of solid-f...
The present work examines the impact of the dimensionality of single-particle models (SPMs) for the ...
Predicting pyrolytic conversion of larger particles of wood (thermally thick regime) is a complex ta...
Pyrolysis of forest combustibles is an elementary process in the ignition and spread of forest fires...
The aim of this work is to analyze some new experimental data of pyrolysis of thick woody biomass pa...
International audiencePyrolysis experiments were performed between 800 degrees °C and 950 degrees °C...
Devolatilization is an important mechanism in the gasification and pyrolysis of woody biomass, and h...
Pyrolysis of centimeter-scale wood particles is of practical interest and provides a sensitive test ...
Introduction: The fundamentals of biomass pyrolysis kinetics had been established for fine powders (...
In the present study, a mathematical model to describe the pyrolysis of a single solid particle of...
Pyrolysis of centimeter-scale wood particles is of practical interest and provides a sensitive test ...
Reactors for flash pyrolysis of biomass are designed to maximize the yield of bio-oil, at the expens...
11th International Conference on Chemical and Process Engineering (ICheaP), Milan, ITALY, JUN 02-05,...
A detailed mathematical model is presented for the temporal and spatial accurate modeling of solid-f...
The present work examines the impact of the dimensionality of single-particle models (SPMs) for the ...
Predicting pyrolytic conversion of larger particles of wood (thermally thick regime) is a complex ta...
Pyrolysis of forest combustibles is an elementary process in the ignition and spread of forest fires...
The aim of this work is to analyze some new experimental data of pyrolysis of thick woody biomass pa...
International audiencePyrolysis experiments were performed between 800 degrees °C and 950 degrees °C...
Devolatilization is an important mechanism in the gasification and pyrolysis of woody biomass, and h...
Pyrolysis of centimeter-scale wood particles is of practical interest and provides a sensitive test ...
Introduction: The fundamentals of biomass pyrolysis kinetics had been established for fine powders (...
In the present study, a mathematical model to describe the pyrolysis of a single solid particle of...
Pyrolysis of centimeter-scale wood particles is of practical interest and provides a sensitive test ...
Reactors for flash pyrolysis of biomass are designed to maximize the yield of bio-oil, at the expens...
11th International Conference on Chemical and Process Engineering (ICheaP), Milan, ITALY, JUN 02-05,...
A detailed mathematical model is presented for the temporal and spatial accurate modeling of solid-f...
The present work examines the impact of the dimensionality of single-particle models (SPMs) for the ...
Predicting pyrolytic conversion of larger particles of wood (thermally thick regime) is a complex ta...