Typical diffusion behaviour in packaging polymers - application to functional barriers |
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Authors: | Patrice Dole Alexandre E. Feigenbaum Carlos De La Cruz Sara Pastorelli Perfecto Paseiro Thomas Hankemeier Yiannis Voulzatis Susana Aucejo Philippe Saillard Costas Papaspyrides |
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Affiliation: | a INRA SquAlE, Reims, Franceb Analytical Chemistry, Nutrition and Bromatology Department, Faculty of Pharmacy, University of Santiago de Compostela (USC), Spainc Packaging Research Group, Analytical Sciences Division, TNO-Nutrition and Food Research Institute, Zeist, The Netherlandsd Laboratory of Polymer Technology, School of Chemical Engineering, National Technical University of Athens, Greece |
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Abstract: | When plastics are collected for recycling, possibly contaminated articles might be recycled into food packaging, and thus the contaminants might subsequently migrate into the food. Multilayer functional barriers may be used to delay and to reduce such migration. The contribution of the work reported here is to establish reference values (at 40°C) of diffusion coefficients and of activation energies to predict the functional barrier efficiency of a broad range of polymers (polyolefins, polystyrene, polyamide, PVC, PET, PVDC, [ethylene vinyl alcohol copolymer], polyacrylonitrile and [ethylene vinyl acetate copolymer]). Diffusion coefficients (D) and activation energies (Ea) were measured and were compiled together with literature data. This allowed identification of new trends for the log D = f(molecular weight) relationships. The slopes were a function of the barrier efficiency of the polymer and temperature. The apparent activation energy of diffusion displayed two domains of variation with molecular weight (M). For low M (gases), there was little variation of Ea. Focusing on larger molecules, high barrier polymers displayed a larger dependence of Ea with M. The apparent activation energy decreased with T. These results suggest a discontinuity between rubbery and glassy polymers. |
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Keywords: | Surrogates functional barrier diffusion coefficient activation energy polymer migration recycling packaging |
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