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Biodegradable, Antimicrobial and Antioxidant Biofilm for Active Packaging Based on Extracted Gelatin and Lignocelluloses Biowastes

机译:基于提取的明胶和木质纤维素生物搬运的可生物降解,抗微生物和抗氧化生物膜用于活性包装

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摘要

Blending of lignocellulosic fibers from Citrus trees trimming wastes and extracted gelatin (EG) was examined as low cost biobased active biofilm packaging materials imminent substitution for toxic and non-degradable petrochemical polymers. Citrus lignocellulosic fibers (CLCF) are rich with many antioxidants, biocompatible and have high safety profiles. EG is an extracted biopolymer from white leather shavings (WLS) as leather industry wastes after alkaline hydrolysis. Both wastes were an adaptation for safe and green packaging requirements. The resulting biofilms were described using Fourier transform Infrared (FT-IR) spectroscopy, thermal analysis (TGA and DTGA), scanning electron microscope (SEM), biodegradability, antioxidant and antimicrobial. The properties of some characteristics of blends biofilms as far as mechanical, thermal properties have been discussed as biodegradable package films. In context, the prepared biofilms were characteristic with antimicrobial, antioxidant and biodegradability with adequate different mechanical and permeability properties which suitable to different packaging applications.[GRAPHICS].
机译:从柑橘树修剪废物和提取的明胶(例如)作为低成本生物化活性生物膜包装材料来融合来自柑橘树木的搅拌和提取的明胶(例如)即将取代毒性和不可降解的石化聚合物。柑橘木质纤维素纤维(CLCF)富含许多抗氧化剂,生物相容性并具有高安全性。例如,碱性水解后的皮革工业废物是皮革工业废物的提取的生物聚合物。两次废物都是安全和绿色包装要求的适应。使用傅里叶变换红外(FT-IR)光谱,热分析(TGA和DTGA),扫描电子显微镜(SEM),生物降解性,抗氧化剂和抗微生物剂来描述所得的生物膜。已经讨论了混合生物膜的一些特征的性质,作为机械,热性质已经被讨论为可生物降解的包装膜。在上下文中,制备的生物膜具有抗微生物,抗氧化剂和生物降解性,具有适合不同包装应用的适当不同的机械和渗透性。[图形]。

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