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Journal ArticleDOI

Kinetic analysis and pyrolysis behaviour of waste biomass towards its bioenergy potential.

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TLDR
The present study addressed the kinetics characteristics and pyrolysis behaviour of waste biomass Azadirachta indica (NM) and Phyllanthus emblica kernel in a thermogravimetric analyzer to find strong evidence of moisture, protein, acid, and aromatics.
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This article is published in Bioresource Technology.The article was published on 2020-09-01. It has received 125 citations till now. The article focuses on the topics: Pyrolysis & Biomass.

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Pyrolysis of agricultural waste biomass towards production of gas fuel and high-quality char: Experimental and numerical investigations

TL;DR: In this paper, the pyrolysis of agricultural biomass was investigated to determine the most promising process parameters for Pyrolytic gas production, and it was found that the quality of the pyrotechnic gas increased with temperature, both in terms of the yield and concentration of gaseous components (hydrogen and methane).
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ICTAC Kinetics Committee recommendations for analysis of thermal decomposition kinetics

TL;DR: In this paper , the authors present a collection of recommendations for the kinetic analysis of thermal decomposition processes in inorganic, organic, and polymeric materials, as well as biomass and solid fuels.
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Investigation of the co-pyrolysis of coal slime and coffee industry residue based on machine learning methods and TG-FTIR: Synergistic effect, kinetics and thermodynamic

TL;DR: In this article, the co-pyrolysis characteristics of coal slime (CS) and coffee industry residue (CIR) at different heating rates were analyzed using an ANN model, and the results showed that the blending of 30 % CIR in CS could reduce greenhouse gas emissions.
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Investigation of kinetic compensation effect in lignocellulosic biomass torrefaction: Kinetic and thermodynamic analyses

TL;DR: In this paper, the kinetic compensation effect between the activation energy and the preexponential factor has extensively existed in the thermochemical conversion processes of lignocellulosic biomass.
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Describing biomass pyrolysis kinetics using a generic hybrid intelligent model: A critical stage in sustainable waste-oriented biorefineries

TL;DR: In this paper, a generic hybrid intelligent model was developed to describe biomass pyrolysis kinetics based on the ultimate analysis (carbon, hydrogen, oxygen, nitrogen, sulfur content) and process heating rate.
References
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Journal ArticleDOI

Pyrolysis of Wood/Biomass for Bio-oil: A Critical Review

TL;DR: A review of the recent developments in the wood pyrolysis and reports the characteristics of the resulting bio-oils, which are the main products of fast wood pyrotechnics, can be found in this paper.
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ICTAC Kinetics Committee recommendations for performing kinetic computations on thermal analysis data

TL;DR: In this article, the authors have developed recommendations for reliable evaluation of kinetic parameters (the activation energy, the preexponential factor, and the reaction model) from the data obtained by means of thermal analysis methods such as TGA, differential scanning calorimetry (DSC), and differential thermal analysis (DTA).
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Modeling chemical and physical processes of wood and biomass pyrolysis

TL;DR: In this article, the state of the art in modeling chemical and physical processes of wood and biomass pyrolysis is reported, and the main achievements of numerical simulations are discussed.
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In-depth investigation of biomass pyrolysis based on three major components: Hemicellulose, cellulose and lignin

TL;DR: In this article, the different roles of the three components (hemicellulose, cellulose, and lignin) in pyrolysis are investigated in depth using a thermogravimetric analyzer (TGA).
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Biomass pyrolysis kinetics: A comparative critical review with relevant agricultural residue case studies

TL;DR: A critical review of kinetic models and mathematical approximations currently employed in solid state thermal analysis is provided and analysis of thermal decomposition data obtained from two agricultural residues, nutshells and sugarcane bagasse reveals the inherent difficulty and risks involved in modeling heterogeneous reaction systems.
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