Degradation kinetics of ethylene-octene copolymer/wood flour biocomposites in dependence to filler content

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Abstract

This article is focused on thermal oxidative degradation and biodegradation in soil of biocomposites based on ethylene-octene copolymer (EOC), filled by wood flour (from 30 to 70% wt.), in dependence to the filler content. The study of oxidative degradation of composites was carried out at two temperatures (80 and 130C respectively). The induction period and the rates of oxidation were determined. It was concluded that as filler content raises, the induction period increases. It can be explained by the higher specific area of composites in comparison with pure EOC. However, high filled composites (60 and 70 % of the filler) are oxidized with a huge induction period because polyphenols in the filler inhibit the oxidation process. Biodegradation test under laboratory conditions was carried out to investigate the biodegradability of the material. Composites with lower filler content have lower weight loss rate. Small particles are capsulated by polymer and are isolated from moisture and microorganisms. On the other hand, at a high filling of the composite small particles stick together and act as large ones. Such filler agglomerates are connected with each other and allow microorganisms to penetrate into the composite. It was concluded as filler content raises the mass loss increases.

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Zykova, A. K., Pantyukhov, P. V., Monakhova, T. V., & Popov, A. A. (2017). Degradation kinetics of ethylene-octene copolymer/wood flour biocomposites in dependence to filler content. In IOP Conference Series: Materials Science and Engineering (Vol. 213). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/213/1/012012

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