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Effect of thermo-pressing temperature on the functional properties of bioplastics made from a renewable wheat gliadin resin
Authors:Mari Pau Balaguer  Joaquin Gomez-EstacaJosep Pasqual Cerisuelo  Rafael GavaraPilar Hernandez-Munoz
Affiliation:Instituto de Agroquímica y Tecnología de Alimentos (IATA-CSIC), Grupo de Envases, Av. Agustín Escardino 7, 46980 Paterna, Valencia, Spain
Abstract:In this work a new methodology based on thermo-pressing a resin made from gliadins and glycerol has been developed to obtain water resistant films. The effect of processing temperature was studied on the functional properties of the films. The results of SDS-PAGE analysis of the molecular weight profiles of the resulting films were indicative of disulfide/sulfhydryl interchange reactions giving rise to the formation of intermolecular disulfide bonds between the gliadin units. These reactions augmented the degree of cross-linking of the matrix, which increased with thermo-pressing temperature, as evidenced by the residual reaction enthalpy values determined by MDSC as well as by cross-linking density values determined from tensile tests. In consequence the films produced at high temperature had better water resistance upon immersion, greater maximum tensile strength and Young's modulus values, and lower water vapor and oxygen permeabilities compared with cast films. Based on the analytical test results, thermo-pressing the resin in successive time/force steps along with a temperature of 130 °C produced gliadin films with improved properties.
Keywords:Biopolymer  Gliadins  Thermo-pressing  Physical properties  Renewable resin
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