Edible starch films enhanced using CaCO3 nanoparticles and plasticizers by optimized extrusion-casting process

Edible films (EF) can be produced and developed for preservation of fruits and vegetables. Starch has been considered one of the biopolymers with the greatest potential to produce edible films by different processing techniques such as extrusion-casting. The objetive was to study the effect of calci...

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Detalles Bibliográficos
Autores: Limón-Valenzuela, Víctor, Aguilar-Palazuelos, Ernesto, Martínez-Bustos, Fernando, Montoya-Rodriguez, Álvaro, Camacho-Hernández, Irma Leticia, Zazueta-Morales, José de Jesús, Jacobo-Valenzuela, Noelia, Carrillo-López, Armando
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2022
País:México
Institución:UNIVERSIDAD DE SONORA
Repositorio:Biotecnia
Idioma:inglés
OAI Identifier:oai:oai.biotecnia.unison.mx:article/1508
Acceso en línea:https://biotecnia.unison.mx/index.php/biotecnia/article/view/1508
Access Level:acceso abierto
Palabra clave:Starch edible films
CaCO3 nanoparticles
Extrusion technology
Casting technique
Microstructural properties
Películas comestibles de almidón
Nanopartículas de CaCO3
Tecnología de extrusión
Técnica de casting
Propiedades microestructurales
Descripción
Sumario:Edible films (EF) can be produced and developed for preservation of fruits and vegetables. Starch has been considered one of the biopolymers with the greatest potential to produce edible films by different processing techniques such as extrusion-casting. The objetive was to study the effect of calcium carbonate nanoparticles and plasticizers (sorbitol- glycerol (80-20%; w/w)) (by extrusion (EXT)-casting (CT) combination technologies to obtain EF with improved mechanical and barrier properties. Corn starch-plasticizers were processed in a twin screw extruder to produce thermoplastic starch modified followed by the addition of the calcium carbonate nanoparticles (CCNP) in casting to EF formation. A hybrid design (four factors; twenty one treatments) of surface response methodology was used to optimization process. The optimal EF was characterized mechanical and barrier properties and also characterized according to microstructural properties (X-ray diffraction, Scanning Electron Microscopy) to determine the damage caused in the starch during EXT and CT. In conclusion, it is possible to obtain EF with greater both Breaking Strength and Deformation, as well as, lower Water Vapor Permeability and Solubility (mechanical and barrier properties), through the use of CCNP and plasticizers, using EXT-CT combination processes.