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Preparation and Properties of Biodegradable Film Composites Using Modified Cellulose Fibre-Reinforced with PVA

机译:PVA改性纤维素纤维制备可降解薄膜复合材料及其性能

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Cellulose has a potential to become a key resource in the development of biodegradable film composites. In this work, cellulose was modified by using 2-(Trifluromethyl)benzoylchloride by base-catalyzed reaction. Modification of cellulose was confirmed by IR studies. The biodegradable composite films were developed by film casting method using modified cellulose with Poly(vinyl alcohol) in different compositions. The film composites were characterized by mechanical, moisture absorption, gas barrier, and biodegradable properties. Obtained films have shown transparency and flexibility and displayed good mechanical properties. Film composites also showed good biodegradability. Better barrier properties showed by film composites as the percentage of modified cellulose increased. This indicates the importance of modified cellulose as a reinforcing agent. After evaluating these properties of film composites, we came to conclusion that these biocomposites can be used to membrane and packaging applications.
机译:纤维素有潜力成为生物可降解薄膜复合材料开发的关键资源。在这项工作中,使用2-(三氟甲基)苯甲酰氯通过碱催化反应对纤维素进行了改性。通过IR研究证实了纤维素的改性。可生物降解的复合膜是通过膜流延法使用改性纤维素与聚乙烯醇以不同的组成进行流延的。薄膜复合材料的特征在于机械性能,吸湿性,阻气性和可生物降解性能。所获得的膜显示出透明性和柔韧性并且显示出良好的机械性能。薄膜复合材料也显示出良好的生物降解性。随着改性纤维素百分比的增加,薄膜复合材料表现出更好的阻隔性能。这表明改性纤维素作为增强剂的重要性。在评估了薄膜复合材料的这些特性之后,我们得出结论,这些生物复合材料可用于膜和包装应用。

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