Preparation of feedstock is a major energy intensive process for the thermochemical conversion of biomass into fuel. By eliminating the need to grind biomass prior to the torrefaction process, there would be a potential gain in the energy requirements as the entire step would be eliminated. In regards to a commercialization of torrefaction technology, this study has examined heat transfer inside large cylindrical biomass both numerically and experimentally during torrefaction. A numerical axis-symmetrical 2-D model for heat transfer during torrefaction at 270(A degrees)C for 1 h was created in COMSOL Multiphysics 5.1 considering heat generation evaluated from the experiment. The model analyzed the temperature distribution within the core and on the surface of biomass during torrefaction for various sizes. The model results showed similarities with experimental results. The effect of L/D ratio on temperature distribution within biomass was observed by varying length and diameter and compared with experiments in literature to find out an optimal range of cylindrical biomass size suitable for torrefaction. The research demonstrated that a cylindrical biomass sample of 50 mm length with L/D ratio of 2 can be torrefied with a core-surface temperature difference of less than 30 A degrees C. The research also demonstrated that sample length has a negligible effect on core-surface temperature difference during torrefaction when the diameter is fixed at 25 mm. This information will help to design a torrefaction processing system and develop a value chain for biomass supply without using an energy-intensive grinding process.
机构:
Commissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, France
Ecole Polytech Fed Lausanne, CH-1015 Lausanne, SwitzerlandCommissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, France
Peduzzi, Emanuela
Boissonnet, Guillaume
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Commissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, FranceCommissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, France
Boissonnet, Guillaume
Haarlemmer, Geert
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Commissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, FranceCommissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, France
Haarlemmer, Geert
Dupont, Capucine
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Commissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, FranceCommissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, France
Dupont, Capucine
Marechal, Francois
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Ecole Polytech Fed Lausanne, CH-1015 Lausanne, SwitzerlandCommissariat Energie Atom & Energies Alternat, LITEN DTBH SBRT Biomass Technol Lab, F-38054 Grenoble 9, France
机构:
Department of Mechanical Engineering, Ladoke Akintola University of Technology, OgbomosoDepartment of Mechanical Engineering, Ladoke Akintola University of Technology, Ogbomoso