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This book has covered some essential innovations on Fluidized Bed Combustion (FBC) of high-volatile matter (VM) fuels especially using porous solids as bed material. The delayed onset of devolatilization is expected to broaden the area of devolatilization in the reactor, thus to avoid formation of local VM-rich zone in the freeboard. A new method has been developed to evaluate horizontal dispersion of solids at high bed temperatures that resemble those of commercial operations. As the first step to scaling-up of the FBC system using carbon loaded solids prepared by capacitance effect, the…mehr

Produktbeschreibung
This book has covered some essential innovations on Fluidized Bed Combustion (FBC) of high-volatile matter (VM) fuels especially using porous solids as bed material. The delayed onset of devolatilization is expected to broaden the area of devolatilization in the reactor, thus to avoid formation of local VM-rich zone in the freeboard. A new method has been developed to evaluate horizontal dispersion of solids at high bed temperatures that resemble those of commercial operations. As the first step to scaling-up of the FBC system using carbon loaded solids prepared by capacitance effect, the developed model is considered to be applicable to large-scale FBCs if the solid dispersion coefficient can be predicted.
Autorenporträt
Dr. I Nyoman Suprapta Winaya is a lecturer and an active researcher in the Departement of Mechanical Engineering at Udayana University, Bali, Indonesia. His main research interest is in Fluidized Bed Combustion and Gasification. He finished his Master Degree from Dalhousie University of Canada and Doctor Degree from Niigata University of Japan.