使用层叠纤维素纳米晶体/壳聚糖复合涂层增强桑葚的耐储存性

IF 4.7 3区 工程技术 Q2 ENGINEERING, ENVIRONMENTAL
Xiaoyan Liu, Mingjun Ma, Haonan Yu, Shaoyu Shang, Lanxing Du
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引用次数: 0

摘要

新鲜桑葚是一种柔软多汁的水果,果皮上没有保护层,限制了其储存和运输。纳米纤维素(NCC)和壳聚糖(CS)薄膜具有高气体阻隔性、优异的机械性能和抗菌性能,在包装领域具有广泛的应用潜力。因此,本研究旨在利用层压纤维素纳米晶/CS(NCC/CS)复合涂层提高新鲜桑葚的耐储存性。研究了薄膜微观结构、气体阻隔特性和桑葚贮藏特性之间的关系。结果表明,制备的 NCC 结晶度为 80.40%,长度为 382.53 ± 42.40 nm,直径为 10.97 ± 4.71 nm。它能够形成一层均匀的薄膜,氧气透过率为 23.97 × 103 cm3/(cm2 天),溶解率为 0.0025 g/min。层压 NCC/CS 复合材料的结构更致密,氧气透过率更低,为 0.62 × 103 立方厘米/(平方厘米-天),并具有抗菌性能,抗菌圈直径为 5.3-6.2 毫米。在贮藏期间,NCC/CS 涂层桑葚的感官质量下降较慢,质量损失率较低,腐烂率也较低。10 天后,与无涂层桑葚相比,NCC/CS 涂层桑葚的可溶性固形物含量从 10.9% 降至 8.73%,可溶性葡萄糖含量从 5.24% 增至 6.2%,丙二醛含量从 20.43% 增至 37.95%。涂层提供了机械保护,并具有优异的氧气阻隔性能和更致密的微观结构,从而使桑葚的呼吸功能更弱,贮藏效果更好。该研究结果为 NCC 材料的实际应用提供了一种新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced Storage Resistance of Mulberries Using Laminated Cellulose Nanocrystals/Chitosan Composite Coatings

Enhanced Storage Resistance of Mulberries Using Laminated Cellulose Nanocrystals/Chitosan Composite Coatings

Fresh mulberry is a soft and juicy fruit with no protective layer on the skin, limiting its storage and transportation. Nanocellulose (NCC) and chitosan (CS) films have extensive potential in packaging due to their high–gas barrier, excellent mechanical, and antibacterial properties. Therefore, this study aimed to improve the storage resistance of fresh mulberries using laminated cellulose nanocrystal/CS (NCC/CS) composite coatings. The relationships between film microstructure, gas barrier characteristics, and mulberry storage properties were investigated. The results showed that the prepared NCC had a crystallinity of 80.40% with the length of 382.53 ± 42.40 nm and the diameter of 10.97 ± 4.71 nm. It was capable of forming a uniform film with an oxygen transmittance rate of 23.97 × 103 cm3/(cm2 day) and a solubility rate of 0.0025 g/min. The laminated NCC/CS composites had a denser structure, a lower oxygen transmittance rate of 0.62 × 103 cm3/(cm2 day), and antibacterial properties, as indicated by an inhibition circle measuring 5.3–6.2 mm in diameter. During storage, NCC/CS-coated mulberries displayed a slowly reducing sensory quality, lower mass loss rate, and lower rotting rate. After 10 days, compared with the uncoated mulberry, the soluble solid content in NCC/CS-coated mulberries decreased from 10.9 to 8.73%, soluble glucose content increased from 5.24 to 6.2%, and malondialdehyde content increased from 20.43 to 37.95%. The coating provided mechanical protection and offered superior oxygen barrier properties and a denser microstructure, leading to a weaker respiratory function and better mulberry storage. The findings of this study provided a novel approach for the practical application of NCC materials.

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来源期刊
Journal of Polymers and the Environment
Journal of Polymers and the Environment 工程技术-高分子科学
CiteScore
9.50
自引率
7.50%
发文量
297
审稿时长
9 months
期刊介绍: The Journal of Polymers and the Environment fills the need for an international forum in this diverse and rapidly expanding field. The journal serves a crucial role for the publication of information from a wide range of disciplines and is a central outlet for the publication of high-quality peer-reviewed original papers, review articles and short communications. The journal is intentionally interdisciplinary in regard to contributions and covers the following subjects - polymers, environmentally degradable polymers, and degradation pathways: biological, photochemical, oxidative and hydrolytic; new environmental materials: derived by chemical and biosynthetic routes; environmental blends and composites; developments in processing and reactive processing of environmental polymers; characterization of environmental materials: mechanical, physical, thermal, rheological, morphological, and others; recyclable polymers and plastics recycling environmental testing: in-laboratory simulations, outdoor exposures, and standardization of methodologies; environmental fate: end products and intermediates of biodegradation; microbiology and enzymology of polymer biodegradation; solid-waste management and public legislation specific to environmental polymers; and other related topics.
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