纳米复合材料
硼酸
材料科学
食品包装
复合材料
纳米纤维
保质期
纤维素
水分
纳米纤维素
化学工程
吸水率
傅里叶变换红外光谱
聚乙烯醇
传输速率
延展性(地球科学)
细菌纤维素
色散(光学)
涂布纸
活性包装
蜡
透射率
聚乙烯
作者
Fathima Noushad,Sreedevi T,Bidhari Pidhatika,Asha Bhanu A V,Jesia Susan George,Reza Pahlevi Rudianto,S. Abhilash,Jyotishkumar Parameswaranpillai,Poornima Vijayan P
摘要
ABSTRACT The short shelf life of fruits and vegetables is a major challenge in the global food supply chain. The current study proposes a solution for preserving fruits and vegetables using biodegradable wrapping instead of conventional plastic wrapping films. PVA nanocomposite films have been prepared using boric acid (BA) as the crosslinking agent and cellulose nanofiber (CNF) extracted from waste onion skin as a nanofiller. The PVA‐BA‐CNF nanocomposite films were evaluated for their morphology, UV shielding and mechanical properties. Morphological studies reveal that the nanocomposite films have a crack‐free rough surface resulting from a combined effect of cross‐linking with BA and dispersion of CNF. The UV–visible spectroscopy results confirmed that the CNF helped significantly to reduce the UV transmittance of PVA‐BA‐CNF, thereby enhancing the UV shielding properties of the film. Whereas the structural reinforcement was enhanced, a compromise in ductility was noted in the PVA‐BA‐CNF nanocomposite films. Further, the quality of the films for preserving fruits and vegetables was tested using a water vapour transmission study, weight loss analysis and antibacterial study. The PVA‐BA‐CNF nanocomposite films showed the lowest water vapour transmission rate (WVTR), especially at high BA content (8 phr), compared to PVA and PVA‐BA films, indicating enhanced moisture barrier performance suitable for packaging. The PVA‐BA‐CNF films showed superior antibacterial activity with 42.84% inhibition against Escherichia coli , due to the formation of a borate–CNF complex in addition to BA‐induced inhibition. It was also found that the PVA‐BA‐CNF wrapping film extended the shelf life of tomatoes compared to unwrapped tomatoes. Hence, the current research contributes towards sustainable food packaging films with excellent UV‐blocking, mechanical, barrier and antibacterial performance.
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