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PUBLICATIONS
1987
Bilbao, Rafael; Arauzo, Jesús; Millera, Ángela
Kinetics of thermal decomposition of cellulose. Part I. Influence of experimental conditions Journal Article
In: Thermochimica Acta, vol. 120, no. C, pp. 121–131, 1987, ISSN: 00406031.
@article{Bilbao1987,
title = {Kinetics of thermal decomposition of cellulose. Part I. Influence of experimental conditions},
author = {Rafael Bilbao and Jesús Arauzo and Ángela Millera},
doi = {10.1016/0040-6031(87)80211-3},
issn = {00406031},
year = {1987},
date = {1987-10-01},
journal = {Thermochimica Acta},
volume = {120},
number = {C},
pages = {121--131},
publisher = {Elsevier},
abstract = {The kinetics of weight loss in the thermal decomposition of cellulose have been determined by means of isothermal and dynamic experiments carried out under various conditions. Values for the pyrolyzable fraction, reaction order and kinetic constant have been obtained from isothermal experiments, while the important influence of the rate of heating of the system as well as the percentages of pyrolyzed solids at T ≤ 150°C have been observed from the dynamic experiments. textcopyright 1987.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Bilbao, Rafael; Arauzo, Jesús; Millera, Ángela
Kinetics of thermal decomposition of cellulose. Part II. Temperature differences between gas and solid at high heating rates Journal Article
In: Thermochimica Acta, vol. 120, no. C, pp. 133–141, 1987, ISSN: 00406031.
@article{Bilbao1987a,
title = {Kinetics of thermal decomposition of cellulose. Part II. Temperature differences between gas and solid at high heating rates},
author = {Rafael Bilbao and Jesús Arauzo and Ángela Millera},
doi = {10.1016/0040-6031(87)80212-5},
issn = {00406031},
year = {1987},
date = {1987-10-01},
journal = {Thermochimica Acta},
volume = {120},
number = {C},
pages = {133--141},
publisher = {Elsevier},
abstract = {The use of high heating rates when studying the thermal decomposition kinetics of cellulose gives rise to a gap between the solid temperature and the thermogravimetric system temperature. A model is proposed which accounts for this temperature gap and permits the calculation of the actual solid temperature. The results for various heating rates are fitted using the same kinetic equation. textcopyright 1987.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}