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Green Synthesis, Characterization, Encapsulation, and Measurement of the Release Potential of Novel Alkali Lignin Micro-/Submicron Particles
Published on: March 1, 2024
Sustainable zein-based bioplastic films reinforced with silver nanoparticle-embedded casein nanocomposites for active
Ko-Chi Chen1, You-Ren Lai2, Min-Cheng Lin1
1Department of Chemical Engineering and Biotechnology, Tatung University, Taipei 10452, Taiwan.
Abstract:
This study aimed to synthesize silver nanoparticle-embedded casein nanocomposites (AgNP@CN) and incorporated them into zein (ZN)-derived bioplastic films to enhance their functional properties. The shape, size/dimension, morphology, surface charge, and surface chemistry of AgNP@CN were investigated. After forming AgNP@CN-functionalized ZN bioplastic films (AgNP@CN-ZN), the bioplastic films were characterized. Incorporation of AgNP@CN improved the mechanical properties, thermal stability, surface hydrophobicity, and UV resistance of ZN films. Additionally, the water vapor barrier properties of AgNP@CN-ZN bioplastic films were comparable to or superior to those of conventional plastics. In terms of food packaging, the AgNP@CN-ZN films effectively reduced weight loss and enzymatic browning in banana peels as a food model. Accordingly, the silver content in banana pulp wrapped with AgNP@CN-ZN film was 5.57 × 10-5 mg/kg, well below the specific migration limit. Overall, the research highlights the feasibility of using nanoparticle-protein composites to reinforce the functional properties of bioplastics for sustainable packaging applications.
