High-Performance Biocomposite Polyvinyl Alcohol (PVA) Films Modified with Cellulose Nanocrystals (CNCs), Tannic Acid (TA), and Chitosan (CS) for Food Packaging

被引:16
|
作者
Tan R. [1 ]
Li F. [2 ]
Zhang Y. [1 ]
Yuan Z. [1 ]
Feng X. [3 ]
Zhang W. [1 ]
Liang T. [1 ]
Cao J. [1 ]
De Hoop C.F. [4 ]
Peng X. [5 ]
Huang X. [1 ]
机构
[1] College of Forestry, Sichuan Agricultural University, Sichuan , Chengdu
[2] Landscape Architecture School, Chengdu Agricultural College, Sichuan, Chengdu
[3] Department of Stomatology, North Sichuan Medical University, Nanchong
[4] School of Renewable Natural Resources, Louisiana State University Agricultural Center, Baton Rouge, 70803 , LA
[5] State Key Laboratory of Tree Genetics and Breeding, Key Laboratory of Tree Breeding and Cultivation, National Forestry and Grassland Administration, Research Institute of Forestry, Chinese Academy of Forestry, Beijing
关键词
All Open Access; Gold;
D O I
10.1155/2021/4821717
中图分类号
学科分类号
摘要
Polyvinyl alcohol (PVA) has been widely applied in industries for its low cost, nontoxicity, biodegradability, and renewable advantages. However, its unstable structure may not meet some strong physical and mechanical needs. In order to enhance the performances of the PVA film, cellulose nanocrystals (CNCs), tannic acid (TA), and chitosan (CS), working as a reinforcer, a crosslinker, and an antimicrobial agent, respectively, were introduced into the PVA matrix. The results indicated that CNCs, TA, and CS were evenly distributed and cohesively incorporated within the PVA matrix, which contributed to the good mechanical properties and thermal stabilities of biocomposite PVA films. Besides, the addition of TA remarkably improved the antiultraviolet and antioxidant capabilities of PVA films, although the light transmittance declined slightly. It was also observed that the pure PVA film and PVA reinforced with CNCs were incapable of protecting against bacteria, while the ones with CS had prominent antibacterial properties to Escherichia coli and Staphylococcus aureus. Overall, the resulting film presented a high potential utilization as a food packaging material for its outstanding physical and mechanical performances. © 2021 Ruowen Tan et al.
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