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Plasticized Whey Protein Edible Films: Water Vapor Permeability Properties

Journal of Food Science · 1994 · Vol. 59(2) · pp. 416–419
Tara H. McHughJ.‐F. AUJARDJohn M. Krochta

Abstract

ABSTRACT Heat treatment, protein concentration, and pH effects on water vapor permeability (WVP) of plasticized whey protein films were examined. The best film formation conditions were neutral pH, aqueous 10% (w/w) protein solutions heated for 30 min at 90°. Isoelectric point adjustment of whey protein with calcium ascorbate buffer increased WVP with increasing buffer concentration, The importance of vacuum application to minimize film pore size was identified using scanning electron microscopy. Polyethylene glycol, glycerol and sorbitol plasticizer concentration affected film WVP. Determining the effects of relative humidity on WVP for plasticized whey protein films enabled prediction of film behavior under any water vapor partial pressure gradient.

Nanocomposite Films for Food PackagingProteins in Food SystemsAdvanced Sensor and Energy Harvesting MaterialsPlasticizerIsoelectric pointWhey proteinAqueous solutionGlycerolWater vaporChromatographyChemistrySorbitolChemical engineering
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