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Structural and mechanical properties of edible films from composite mixtures of starch,dextrin and different types of chemically modified starch
Authors:Alfonso Totosaus  Ismael A Godoy  Teresita J Ariza-Ortega
Institution:1. Food Science Lab and Pilot Plant, Tecnologico Estudios Superiores Ecatepec. Av. Tecnologico esq. Av. Central s/n, Ecatepec, México atotosaus@tese.edu.mxORCID Iconhttps://orcid.org/0000-0003-1965-9510;3. Food Science Lab and Pilot Plant, Tecnologico Estudios Superiores Ecatepec. Av. Tecnologico esq. Av. Central s/n, Ecatepec, México ORCID Iconhttps://orcid.org/0000-0003-4093-5997;4. Food Biotechnology, Universidad Politecnica del Valle de Mexico. Av Mexiquense esq Av Universidad Politécnica s/n, Tultitlán, México ORCID Iconhttps://orcid.org/0000-0002-2359-2024
Abstract:Abstract

Recent regulations restricting the use of one-use-plastics open the possibility to develop starch-based edible packaging material. The objective of this work was to determine the effect of three different modified starches on starch and dextrin composite edible films by a mixture design approach on edible films’ mechanical properties. The amylose content of chemically modified starches influenced their swelling capacities, where higher amylose content was inversely related to water-power uptake and directly related to film thickness. CMS3 Nifrastarch-TS edible films, with higher amylose content, presented higher puncture force and tensile strength, but lower puncture deformation and elongation, related to a less smooth surface, according to atomic force micrographs. The use of CMS1 Gelamil-100, with lower amylose content, decreased stiffness but increased films’ stretching, presenting higher surface smoothness film topography. The use of commercial chemical modified starches in combination with starch and dextrin will allow to control of edible film thickness and hence, mechanical properties, depending on food covering necessities.
Keywords:Starch  dextrin  chemically modified starch  edible films  mixture design approach  mechanical properties
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