Scinovex
articleTop 10% cited

Thermal degradation of cellulose in air and nitrogen at low temperatures

Journal of Applied Polymer Science · 1979 · Vol. 23(5) · pp. 1431–1442
Fred ShafizadehAllan G. W. Bradbury

Abstract

Abstract Thermal analysis and kinetic studies have shown that oxidative reactions are responsible for acceleration in the rates of weight loss and depolymerization of cellulose on pyrolysis in air at temperatures below 300°C. The oxidative reactions include production of hydroperoxide, carbonyl, and carboxyl groups, which have been investigated at lower temperatures along with the rates of depolymerization and production of carbon monoxide and carbon dioxide. The experimental results are consistent with an autoxidation mechanism involving initiation, propagation, and decomposition reactions. At temperatures above 300°, the rate of pyrolysis is essentially the same in both air and nitrogen, indicating that thermal degradation is independent of the oxidative reactions.

Lignin and Wood ChemistryAdvanced Cellulose Research StudiesThermochemical Biomass Conversion ProcessesDepolymerizationCelluloseAutoxidationPyrolysisChemistryDecompositionThermal decompositionCarbon monoxideDegradation (telecommunications)Reaction mechanism
Citations
460
FWCI
8.98
field-weighted impact
References
17
Percentile
99%
vs. same field & year
Citations per year
Cited by
Methods for Pretreatment of Lignocellulosic Biomass for Efficient Hydrolysis and Biofuel Production
Industrial & Engineering Chemistry Research · 2009 · 3,672 citations
Ethanol as an alternative fuel from agricultural, industrial and urban residues
Resources Conservation and Recycling · 2006 · 778 citations
Kinetics and Mechanism of Cellulose Pyrolysis
The Journal of Physical Chemistry C · 2009 · 675 citations
Hydrolysis of lignocellulosic materials for ethanol production: a review
Bioresource Technology · 2002 · 5,945 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.