生物塑料
乙烯醇
辣木
材料科学
食品包装
酒
化学
食品科学
高分子科学
有机化学
高分子化学
聚合物
废物管理
工程类
作者
Sunita Ranote,Marek Kowalczuk,Natalia Guzenko,Khadar Duale,Paweł Chaber,Marta Musioł,Andrzej Jankowski,Andrzej Marcinkowski,Piotr Kurcok,Ghanshyam S. Chauhan,Sandeep Chauhan,Kiran Kumar
标识
DOI:10.1016/j.ijbiomac.2024.132219
摘要
The use of plant gum-based biodegradable bioplastic films as a packaging material is limited due to their poor physicochemical properties. However, combining plant gum with synthetic degradable polymer and some additives can improve these properties. Keeping in view, the present study aimed to synthesize a series of bioplastic films using Moringa oleifera gum, polyvinyl alcohol, glycerol, and citric acid via thermal treatment followed by a solution casting method. The films were characterized using analytical techniques such as FTIR, XRD, SEM, AFM, TGA, and DSC. The study examined properties such as water sensitivity, gas barrier attributes, tensile strength, the shelf life of food, and biodegradability. The films containing higher citric acid amounts showed appreciable %elongation without compromising tensile strength, good oxygen barrier properties, and biodegradation rates (>95%). Varying the amounts of glycerol and citric acid in the films broadened their physicochemical properties ranging from hydrophilicity to hydrophobicity and rigidity to flexibility. As all the films were synthesized using economical and environmentally safe materials, and showed better physicochemical and barrier properties, this study suggests that these bioplastic films can prove to be a potential alternative for various packaging applications.
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