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Investigations on heat transfer and hydrodynamics under pyrolysis conditions of a pilot-plant draft tube conical spouted bed reactor
Authors:J MakibarAR Fernandez-Akarregi  I AlavaF Cueva  G LopezM Olazar
Affiliation:a Ikerlan-IK4, Juan de la Cierva 1, Arabako Parke Teknologikoa, E-01510 Minao, Araba, Spain
b Department of Chemical Engineering, University of the Basque Country, PO Box 64. E48080 Bilbao, Spain
Abstract:This paper describes the hydrodynamic and heat transfer performance of a pilot-plant scale conical spouted bed reactor designed for the pyrolysis of biomass wastes. The spouted bed reactor is the core of a fast pyrolysis pilot plant with continuous biomass feed of up to 25 kg/h, located at the Ikerlan-IK4 facilities.The aim of this paper is to obtain a deeper understanding of the spouted bed reactor performance at pyrolysis temperatures, in order to operate under stable conditions, improve the heat transfer rate in the reactor and minimize energy requirements. The influence of temperature on conical spouted bed hydrodynamics has been studied and wall-to-bed and bed-to-surface heat transfer coefficients have been determined.
Keywords:Conical spouted bed  Draft tube  Hydrodynamics  Heat transfer  Fast pyrolysis  Scale up  Reaction engineering
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