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Developed Chitosan/Oregano Essential Oil Biocomposite Packaging Film Enhanced by Cellulose Nanofibril

机译:纤维素纳米纤维发育壳聚糖/牛至精油生物复合包装膜增强

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摘要

The use of advanced and eco-friendly materials has become a trend in the field of food packaging. Cellulose nanofibrils (CNFs) were prepared from bleached bagasse pulp board by a mechanical grinding method and were used to enhance the properties of a chitosan/oregano essential oil (OEO) biocomposite packaging film. The growth inhibition rate of the developed films with 2% ( / ) OEO against and reached 99%. With the increased levels of added CNFs, the fibrous network structure of the films became more obvious, as was determined by SEM and the formation of strong hydrogen bonds between CNFs and chitosan was observed in FTIR spectra, while the XRD pattern suggested that the strength of diffraction peaks and crystallinity of the films slightly increased. The addition of 20% CNFs contributed to an oxygen-transmission rate reduction of 5.96 cc/m ·day and water vapor transmission rate reduction of 741.49 g/m ·day. However, the increase in CNFs contents did not significantly improve the barrier properties of the film. The addition of 60% CNFs significantly improved the barrier properties of the film to light and exhibited the lowest light transmittance (28.53%) at 600 nm. Addition of CNFs to the chitosan/OEO film significantly improved tensile strength and the addition of 60% CNFs contributed to an increase of 16.80 MPa in tensile strength. The developed chitosan/oregano essential oil/CNFs biocomposite film with favorable properties and antibacterial activity can be used as a green, functional material in the food-packaging field. It has the potential to improve food quality and extend food shelf life.
机译:使用先进和环保材料已成为食品包装领域的趋势。通过机械研磨方法由漂白的蔗渣浆板制备纤维素纳米纤维(CNFS),并用于增强壳聚糖/牛至精油(OEO)生物复合包装膜的性质。发育薄膜的生长抑制率为2%(/)OEO对抗并达到99%。随着所添加的CNF的水平增加,薄膜的纤维网络结构变得更加明显,如通过SEM测定的,在FTIR光谱中观察到CNFS和壳聚糖之间的强氢键的形成,而XRD模式表明强度薄膜的衍射峰和结晶度略微增加。加入20%CNFS导致氧传输速率降低为5.96cc / m·日,水蒸气透射率为741.49g / m·日。然而,CNFS内容物的增加没有显着提高薄膜的阻隔性能。添加60%CNFS显着改善了薄膜的屏障性能,并在600nm处表现出最低的透光率(28.53%)。向壳聚糖/ OEO膜加入CNFS显着提高拉伸强度,加入60%CNF在拉伸强度增加16.80MPa。开发的壳聚糖/牛至精油/ CNFS生物复合膜具有良好的性质和抗菌活性,可用作食品包装领域的绿色功能材料。它有可能改善食品质量并延长食物保质期。

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