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Biobased Cellulose Nanofibril-Oil Composite Films for Active Edible Barriers

机译:生物纤维素纳米纤维 - 油复合薄膜,用于活性可食用屏障

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摘要

Low-concentration oil-in-water emulsions stabilized by cellulose nanofibrils (CNFs) extracted from primary plant cell wall materials are used to prepare thin biobased CNF-oil composite films by solvent casting. Flexible, transparent, and biodegradable composite films are obtained, with increased thermal stability (up to 300 degrees C) as the oil concentration increases. Examination of the microstructure demonstrates a clear dependency on the oil content, as a multilayered structure where the oil phase trapped between two layers of CNFs is appreciated at high oil concentrations. The embedded oil significantly influences the mechanical and wetting properties of the films, confirming their potential for use in packaging systems. Encapsulation of curcumin in the composite films leads to an increased antioxidant (up to 30% radical scavenging activity) and antimicrobial activity, inhibiting the growth of foodborne bacteria such as Escherichia coll. The resulting composite films show promising results in the field of active packaging for applications in the food, pharmaceutical, and cosmetic industries.
机译:通过纤维素纳米纤维(CNFS)稳定的低浓度油水乳液从原发性植物细胞壁材料中提取的纤维素(CNF)用于通过溶剂浇铸制备薄的生物化的CNF-油复合膜。获得柔性,透明和可生物降解的复合膜,随着油浓度的增加而增加,热稳定性增加(最多300℃)。对微观结构的检查表明了对油含量的透明依赖性,作为多层结构,其中在高油浓度下理解捕获两层CNF之间的油相。嵌入式油显着影响薄膜的机械和润湿性质,确认它们在包装系统中使用的可能性。姜黄素在复合膜中的封装导致增加的抗氧化剂(高达30%的自由基清除活性)和抗微生物活性,抑制食品染额细菌如大肠杆菌的生长。所得到的复合薄膜显示出在食品,制药和化妆品行业中的应用领域的有希望的活性包装领域。

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