Modeling and analysis of the kinetics of the pyrolysis process of biomass with influence raw material composition on Comsol multiphysics
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Abstract
In this article, the modeling and analysis of the
kinetics of the pyrolysis process is carried out, which allows us
to determine the rate of chemical reactions occurring during the
decomposition of the material, as well as to identify key factors
affecting the speed and efficiency of pyrolysis. The simulation
was performed using Comsol Multiphysics software based on
the kinetic mechanisms of the reaction of biomass of corn cob
particles at a temperature of 500°C. The pyrolysis process
of plant biomass was analyzed at a residence time of 0 to 10
minutes. The resulting models describe temperature changes
well, especially in the center of the biomass. It was found that
pyrolysis of corncob biomass occurred in the temperature
range from 190 to 432 °C, at 190 °C mass loss began, which
ended at 432 °C. The kinetic parameters were calculated
using the Kissinger method, and the least squares method
and correlation analysis were used to calculate the kinetic
constants. The study results will be useful for optimizing the
conditions of the biomass pyrolysis process in the future.