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Lignocellulosic biomass pyrolysis mechanism: A state-of-the-art review

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TLDR
A broad review of the state-of-the-art biomass pyrolysis research can be found in this article, where three major components (cellulose, hemicellulose and lignin) are discussed in detail.
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This article is published in Progress in Energy and Combustion Science.The article was published on 2017-09-01. It has received 1613 citations till now. The article focuses on the topics: Lignocellulosic biomass & Biomass.

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Chemicals from lignin: an interplay of lignocellulose fractionation, depolymerisation, and upgrading

TL;DR: This review provides a summary and perspective of the extensive research that has been devoted to each of these three interconnected biorefinery aspects, ranging from industrially well-established techniques to the latest cutting edge innovations.
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Hard carbons for sodium-ion batteries: Structure, analysis, sustainability, and electrochemistry

TL;DR: This review aims at providing a comprehensive overview of the up-to-date known structural models of hard carbons and their correlation with the proposed models for the sodium-ion storage mechanisms and a careful evaluation of potential strategies to ensure a high degree of sustainability.
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Biomass pyrolysis: A review of the process development and challenges from initial researches up to the commercialisation stage

TL;DR: In this article, a review of various pyrolysis process, especially focusing on the effects of essential parameters, the process design, the reactors and the catalysts on the process, is presented.
References
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Journal ArticleDOI

Optimization of coal pyrolysis modeling

TL;DR: A novel method of optimizing the mathematical modeling based on the DAEM has been developed and it has been shown that for a given accuracy, the method involves significantly less computational time than standard methods.
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Multiscale molecular modeling can be an effective tool to aid the development of biomass conversion technology: A perspective

TL;DR: In this paper, the authors provide a perspective on how multiscale molecular modeling can assist in developing the science of biomass processing and provide an outlook on potential studies that could implement multispectral molecular modeling methods to solve some of the challenging problems in developing biomass conversion technology.
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Kinetic simulation of the thermal degradation of phenethyl phenyl ether, a model compound for the β-O-4 linkage in lignin

TL;DR: In this paper, the authors simulated the radical chain propagation of the pyrolysis of phenethyl phenyl ether (PPE), which serves as a model compound for the β-O-4 linkage in lignin.
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Theoretical study of the pyrolysis of vanillin as a model of secondary lignin pyrolysis

TL;DR: In this article, the unimolecular and bimolecular decomposition reactions in processes of vanillin pyrolysis were theoretically investigated by employing density functional theory (DFT) method at M06-2X/6-31 G+(d,p) level.
Journal ArticleDOI

Pyrolysis of extractive rich agroindustrial residues

TL;DR: In this article, the usability of cashew nut shells, jatropha and shea nut presscakes in energetic terms was explored in comparison to lignocellulosic biomass.
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