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用于食品包装应用的透明、增塑纤维素-甘油生物塑料。

Transparent, plasticized cellulose-glycerol bioplastics for food packaging applications.

机构信息

Instituto de Ciencia de Materiales de Sevilla, Centro Mixto CSIC-Universidad de Sevilla, Calle Americo Vespucio 49, Isla de la Cartuja, Sevilla 41092, Spain.

Instituto de Hortofruticultura Subtropical y Mediterránea "La Mayora", Universidad de Málaga-Consejo Superior de Investigaciones Científicas (IHSM, UMA-CSIC), Bulevar Louis Pasteur 49, 29010 Malaga, Spain.

出版信息

Int J Biol Macromol. 2024 Jul;273(Pt 2):132956. doi: 10.1016/j.ijbiomac.2024.132956. Epub 2024 Jun 6.

Abstract

Free-standing films have been obtained by drop-casting cellulose-glycerol mixtures (up to 50 wt% glycerol) dissolved in trifluoroacetic acid and trifluoroacetic anhydride (TFA:TFAA, 2:1, v:v). A comprehensive examination of the optical, structural, mechanical, thermal, hydrodynamic, barrier, migration, greaseproof, and biodegradation characteristics of the films was conducted. The resulting cellulose-glycerol blends exhibited an amorphous molecular structure and a reinforced H-bond network, as evidenced by X-ray diffraction analysis and infrared spectroscopy, respectively. The inclusion of glycerol exerted a plasticizing influence on the mechanical properties of the films, while keeping their transparency. Hydrodynamic and barrier properties were assessed through water uptake and water vapor/oxygen transmission rates, respectively, and obtained values were consistent with those of other cellulose-based materials. Furthermore, overall migration levels were below European regulation limits, as stated by using Tenax® as a dry food simulant. In addition, these bioplastics demonstrated good greaseproof performance, particularly at high glycerol content, and potential as packaging materials for bakery products. Biodegradability assessments were carried out by measuring the biological oxygen demand in seawater and high biodegradation rates induced by glycerol were observed.

摘要

已通过在三氟乙酸和三氟乙酸酐(TFA:TFAA,2:1,v:v)中溶解纤维素-甘油混合物(最高可达 50wt%甘油)来获得独立膜。对膜的光学、结构、机械、热学、流体动力学、阻隔、迁移、防油脂和生物降解特性进行了全面研究。X 射线衍射分析和红外光谱分析分别证明,所得纤维素-甘油共混物具有无定形分子结构和增强的氢键网络。甘油的加入对膜的机械性能具有增塑作用,同时保持其透明度。通过水吸收和水蒸气/氧气传输率分别评估了流体动力学和阻隔性能,得到的值与其他纤维素基材料一致。此外,使用 Tenax®作为干食品模拟物,迁移总量低于欧洲法规的限量。此外,这些生物塑料表现出良好的防油脂性能,特别是在高甘油含量时,并且有潜力用作烘焙产品的包装材料。通过测量海水中的生物需氧量进行了生物降解性评估,并且观察到甘油引起的高生物降解率。

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