Diffusion coefficient and activation energy of Irganox 1010 in poly(propylene-co-ethylene) copolymers

Citation
G. Ferrara et al., Diffusion coefficient and activation energy of Irganox 1010 in poly(propylene-co-ethylene) copolymers, POLYM DEGR, 73(3), 2001, pp. 411-416
Citations number
24
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
POLYMER DEGRADATION AND STABILITY
ISSN journal
01413910 → ACNP
Volume
73
Issue
3
Year of publication
2001
Pages
411 - 416
Database
ISI
SICI code
0141-3910(2001)73:3<411:DCAAEO>2.0.ZU;2-4
Abstract
The diffusion of a thermal stabiliser, Irganox 1010, has been studied both in a commercially available polypropylene homopolymer (HomoQ) and in a poly (propylene-co-ethylene) copolymer (RacoS). The diffusion experiments were c arried out by using the Roe method formed by a stack of several polymer fil ms having 60-70 mum as thickness under nitrogen atmosphere. The concentrati on profile of stabiliser in every film has been monitored by the absorbance at 282 nm in UV spectra recorded for every film forming the stack assembly . Under our experimental conditions, the diffusion of Irganox 1010 in each film. stack for both polymer materials can be correctly interpreted by usin g the Fick's second law. The best fit of the experimental data with this eq uation allows calculation of the diffusion coefficients D, for these polyme r materials at 40, 70 and 80 degreesC. By applying an Arrhenius equation to the calculated D coefficients, an estimation of activation energies of the diffusion process has been also achieved. (C) 2001 Elsevier Science Ltd. A ll rights reserved.