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Kissinger method: the sequential approach and DAEM for kinetic study of rubber and gliricidia wood Cover

Kissinger method: the sequential approach and DAEM for kinetic study of rubber and gliricidia wood

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Open Access
|Jun 2018

Abstract

Rubber and gliricidia are commonly used fuel wood types for industrial applications in Sri Lanka. The government has promoted the cultivation of gliricidia as an energy crop and rubber is generated as a forestry residue. A percentage of the thermal energy requirement in the industrial sector is fulfilled by fuel wood. Although these fuels are widely used in industry, scientific data related to their thermal decomposition is limited. These kinetic data are essential for the optimum usage of firewood and the design of biomass conversion systems. Kinetic parameters of pyrolysis are not available for rubber and gliricidia. Pyrolysis is a major step involved in thermal decomposition of biomass, and is an important process of deriving liquid and gaseous fuels for different applications. This study focused on the analysis of kinetic parameters of pyrolysis for rubber and gliricidia wood by sequential approach to Kissinger method and distributed activation energy model (DAEM).

Language: English
Page range: 187 - 196
Published on: Jun 30, 2018
Published by: National Science Foundation of Sri Lanka
In partnership with: Paradigm Publishing Services

© 2018 K.U.C. Perera, M. Narayana, published by National Science Foundation of Sri Lanka
This work is licensed under the Creative Commons License.