纳米纤维素
淀粉
纤维素
材料科学
食品包装
生物降解
复合材料
复合数
聚合物
高分子科学
结晶度
生物复合材料
化学
有机化学
食品科学
作者
Sneh Punia Bangar,William Scott Whiteside
标识
DOI:10.1016/j.ijbiomac.2021.07.017
摘要
Plastic-based food packaging is generating a serious environmental problem by accumulating large amounts of plastic in the surroundings. Ecological and health concerns are driving research efforts for developing biodegradable films. There are few alternatives that could reduce the environmental impact; one of them is to substitute petroleum-based plastic with starch-based film. Starch has remarkable properties, including biodegradability, sustainability, abundancy, and capable of being modified or blended with other polymers. However, low mechanical strength and low water resistance restrict its application in food packaging. Nanocellulose isolated from lignocellulosic fibers has attracted tremendous interest in the field of science due to high crystallinity and mechanical strength, unique morphology along with abundancy, renewability, and biodegradability. Therefore, nano cellulose as a reinforcer proved to be a good option for fabricating biocomposites for food packaging. The current review will give a critical snapshot of the potential application of nanocellulose in food packaging and discuss new challenges and opportunities for starch biocomposites enriched with nano cellulose. • Starch is a biodegradable, sustainable, abundant, and lost-cost polymer that can be used to produce bio composite films • Nanocellulose incorporated starch films exhibit better barrier and mechanical properties. • The first review to give a critical snapshot of the properties of starch films reinforced nanocellulose. • This review paves the route for producing starch films with nano-cellulose with the best performance.
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