Kinetic studies of the thermal degradation of cellulose acetate/niobium and chitosan/niobium composites
Composites based on cellulose acetate/niobium and chitosan/niobium have been obtained by a new synthetic hydrothermal route with different amounts of Nb 2O 5 (0.0%; 3.7%; 5.8%; 6.7% and 10.9%, incorporated on cellulose acetate fibers and 0.0%; 3.0%; 9.3% and 13.9%, attached on chitosan surface). The...
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Veröffentlicht in: | Reactive & functional polymers 2007-07, Vol.67 (7), p.655-661 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Composites based on cellulose acetate/niobium and chitosan/niobium have been obtained by a new synthetic hydrothermal route with different amounts of Nb
2O
5 (0.0%; 3.7%; 5.8%; 6.7% and 10.9%, incorporated on cellulose acetate fibers and 0.0%; 3.0%; 9.3% and 13.9%, attached on chitosan surface). Thermodecomposition studies were carried on 30–800
°C range at rate of 10
°C
min
−1. Kinetic parameters like activation energy, pre-exponential factor, Gibbs energy, enthalpy and entropy of activation were determined by using Coats–Redfern equation. The activation energy (
E) of degradation presented a decreasing with the incorporation of niobium on cellulose acetate, whereas all kinetic parameters maintained constant with the incorporation of niobium, for chitosan what resulted in a more stable that hybrid chitosan/Nb
2O
5 composites. |
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ISSN: | 1381-5148 |
DOI: | 10.1016/j.reactfunctpolym.2007.04.003 |