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Impact of Oxygen Transport Properties on Polypropylene Thermal Oxidation, Part 1: Effect of Oxygen Solubility

Article dans une revue avec comité de lecture
Auteur
FRANÇOIS-HEUDE, Alexandre
GUINAULT, Alain
DESNOUX, Eric
ccCOLIN, Xavier
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccRICHAUD, Emmanuel

URI
http://hdl.handle.net/10985/9064
DOI
10.1002/app.41441
Date
2014
Journal
Journal of Applied Polymer Science

Résumé

A general kinetic model is proposed to describe the polypropylene thermal oxidation of thin polypropylene films in a wide range of temperatures (from 60 to 200°C) and oxygen partial pressures (from 0.02 to 5 MPa) using a single set of parameters. This model was calibrated with several series of experimental data including analyses of primary (hydroperoxides) and secondary oxidation products (carbonyl species), and subsequent changes in macromolecular properties (average molecular masses). It predicts the experimental data previously published in the literature in terms of induction times and maximal oxidation rates. The variability of the oxygen solubility coefficient allows to explain the scattering of induction times and oxidation rates among the whole iPP family, but also the dependence of this latter quantity with oxygen partial pressure. This variability is presumably due to iPP polymorphism in the temperature range where oxygen permeability is commonly measured. It is concluded that the kinetic model can be used to study the direct effect of iPP morphology on its thermal oxidation kinetics (chemistry of oxidation).

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Documents liés

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  • Impact of Oxygen Transport Properties on the Kinetic Modeling of Polypropylene Thermal Oxidation. II. Effect of Oxygen Diffusivity 
    Article dans une revue avec comité de lecture
    FRANÇOIS-HEUDE, Alexandre; GUINAULT, Alain; DESNOUX, Eric; ccRICHAUD, Emmanuel (Wiley, 2015)
    The kinetic model, established in a previous article (François-Heude et al., J. Appl. Polym. Sci., in press) to predict the homogeneous oxidation in iPP films typically thinner than 100 µm, is now extended to simulate the ...
  • A general kinetic model for the photothermal oxidation of polypropylene 
    Article dans une revue avec comité de lecture
    FRANÇOIS-HEUDE, Alexandre; DESNOUX, Eric; ccCOLIN, Xavier; ccRICHAUD, Emmanuel (Elsevier, 2015)
    A general kinetic model for the photothermal oxidation of polypropylene has been derived from the basic auto-oxidation mechanistic scheme in which the main sources of radicals are the thermolysis and photolysis of the most ...
  • Real-time quantitative analysis of volatile products generated during solid-state polypropylene thermal oxidation 
    Article dans une revue avec comité de lecture
    FRANCOIS-HEUDE, Alexandre; LEPROVOST, Julien; HENINGER, Michel; MESTDAGH, Helene; DESNOUX, Eric; ccCOLIN, Xavier; ccRICHAUD, Emmanuel (Elsevier, 2013)
    Analysis of volatile organic compounds (VOCs) during PP thermal oxidation under three oxygen partial pressures (0%, 21% and 100% of atmospheric pressure) at 140 C was performed by proton transfer reaction coupled with ...
  • Influence of temperature, UV-light wavelength and intensity on polypropylene photothermal oxidation 
    Article dans une revue avec comité de lecture
    FRANCOIS-HEUDE, Alexandre; DESNOUX, Eric; ccCOLIN, Xavier; ccRICHAUD, Emmanuel (Elsevier, 2014)
    A criterion based on the energy absorbed by photosensitive species was proposed to describe the contribution of UV-light to the initiation of the polypropylene photothermal oxidation whatever the light source. The calculation ...
  • Kinetic analysis of polydicyclopentadiene oxidation 
    Article dans une revue avec comité de lecture
    DEFAUCHY, Virginie; LE GAC, Pierre Yves; GUINAULT, Alain; VERDU, Jacques; RECHER, Gilles; DROZDZAK, Renata; ccRICHAUD, Emmanuel (Elsevier, 2017)
    The in situ thermal oxidation of thin unstabilized polydicyclopentadiene was studied by TGA to monitor mass gain, and DSC to characterize hydroperoxides concentration. Results were discussed using kinetic analysis, which ...

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