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Application of Industrially Produced Chitosan in the Surface Treatment of Fibre-Based Material: Effect of Drying Method and Number of Coating Layers on Mechanical and Barrier Properties

机译:工业生产的壳聚糖在纤维基材料表面处理中的应用:干燥方法和涂层数量对机械性能和阻隔性能的影响

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摘要

Chitosan is a versatile biopolymer with many interesting functionalities. Its effects on the barrier and mechanical properties of single- or double-coated fibre-based packaging papers in dependence on the applied drying regime were successfully tested. Our investigations revealed chitosan to be a highly robust biopolymer, since the different drying regimes did not alter its contribution to the development of strength and barrier properties of the coated packaging papers. These properties showed a stronger influence of the applied coat weights than of the different drying regimes. The effect of chitosan coatings were quantified by measuring tensile strength (TS), burst strength (BS) and tensile energy absorption (TEA). These revealed that TS, BS and TEA of the coated papers increased significantly. Moreover, the chitosan-coated papers were less permeable against water vapor and air. High grease resistance was observed for double-coated papers, irrespective of the drying regimes. The coated paper surface showed a more hydrophilic character, resulting in lower contact angles and higher water absorption properties. In this study, industrially produced chitosan has been proven to be a renewable, robust biopolymer that can be utilized as an additive to increase strength and the barrier properties of fibre-based materials.
机译:壳聚糖是一种具有多种有趣功能的通用生物聚合物。成功地测试了其对单面或双面涂层的纤维基包装纸的阻隔性和机械性能的影响,具体取决于所应用的干燥方案。我们的研究表明,壳聚糖是一种高度坚固的生物聚合物,因为不同的干燥方式并未改变其对涂层包装纸强度和阻隔性能发展的贡献。这些性质显示出所施加的涂层重量的影响比不同干燥方案的影响更大。壳聚糖涂层的作用通过测量拉伸强度(TS),破裂强度(BS)和拉伸能吸收(TEA)进行量化。这些表明涂布纸的TS,BS和TEA显着增加。此外,壳聚糖涂布纸对水蒸气和空气的渗透性较低。不论干燥方式如何,双面涂层纸都具有很高的耐油脂性。涂布纸表面显示出更亲水的特性,从而导致更低的接触角和更高的吸水性。在这项研究中,工业生产的壳聚糖已被证明是一种可再生,坚固的生物聚合物,可以用作添加剂来提高纤维基材料的强度和阻隔性能。

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