"INVESTIGATION OF OLIVE STONES PYROLYSIS VIA COUPLED THERMOGRAVIMETRIC ANALYSIS-MASS SPECTROMETRY: THERMAL BEHAVIOR AND KINETIC PARAMETERS"

"The pyrolysis of olive stones was investigated by thermogravimetric analysis-mass spectrometry in nitrogen atmosphere under non-isothermal conditions, at heating rates of 5, 10, 20, and 30 °C/min. According to gas evolution analysis, the thermal degradation of olive stones under inert atmosphe...

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Veröffentlicht in:Cellulose chemistry and technology 2022-05, Vol.56 (5-6), p.481-494
Hauptverfasser: BEDOUI, AMINA, SOUISSI-NAJAR, SOUAD, IDRIS, SITI SHAWALLIAH, ABD RAHMAN, NORAZAH, OUEDERNI, ABDELMOTTALEB
Format: Artikel
Sprache:eng
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Zusammenfassung:"The pyrolysis of olive stones was investigated by thermogravimetric analysis-mass spectrometry in nitrogen atmosphere under non-isothermal conditions, at heating rates of 5, 10, 20, and 30 °C/min. According to gas evolution analysis, the thermal degradation of olive stones under inert atmosphere can be divided into four stages. There was only dehydration in the first stage (550 °C). Thermogravimetric analysis results have been utilized to determine kinetic parameters by using a composite procedure involving the iso-conversional method (Flynn-Wall-Ozawa and Kissinger-Akahira-Sunose) and the master-plots method. The activation energy values estimated by the Ozawa-Flynn- Wall and the Kissinger-Akahira-Sunose methods are very close, with values of 229.20 kJ/mol and 232.55 kJ/mol, respectively. The master-plots method shows that the most probable reaction mechanism was described by an order n (On) model. The frequency factor was estimated to be A = 5.6x1021 min-1, the kinetic exponent was n = 6.2, and the reaction model function was f( ) = (1- )6.2."
ISSN:0576-9787
2457-9459
DOI:10.35812/CelluloseChemTechnol.2022.56.41