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Modelling of pyrolysis of large wood particles
Authors:Anup Kumar Sadhukhan  Parthapratim Gupta  Ranajit Kumar Saha
Institution:1. Chemical Engineering Department, National Institute of Technology, Durgapur 713209 WB, India;2. Chemical Engineering Department, Indian Institute of Technology, Kharagpur 721302 WB, India
Abstract:A fully transient mathematical model has been developed to describe the pyrolysis of large biomass particles. The kinetic model consists of both primary and secondary reactions. The heat transfer model includes conductive and internal convection within the particle and convective and radiative heat transfer between the external surface and the bulk. An implicit Finite Volume Method (FVM) with Tridiagonal Matrix Algorithm (TDMA) is employed to solve the energy conservation equation. Experimental investigations are carried out for wood fines and large wood cylinder and sphere in an electrically heated furnace under inert atmosphere. The model predictions for temperature and mass loss histories are in excellent agreement with experimental results. The effect of internal convection and particle shrinkage on pyrolysis behaviour is investigated and found to be significant. Finally, simulation studies are carried out to analyze the effect of bulk temperature and particle size on total pyrolysis time and the final yield of char.
Keywords:Pyrolysis  Biomass  Kinetic model  Heat transfer model  Finite Volume Method
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