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Regenerated cellulose films with chitosan and polyvinyl alcohol: Effect of the moisture content on the barrier, mechanical and optical properties

机译:用壳聚糖和聚乙烯醇再生纤维素薄膜:水分含量对屏障,机械和光学性质的影响

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The aim of this research was to evaluate the effect of moisture content on the mechanical, barrier and optical properties of films obtained from regenerated cellulose with chitosan and polyvinyl alcohol equilibrated at several relative humidity conditions. The experimental moisture adsorption isotherms were fitted using the Guggenheim-Anderson-DeBoer model. The adsorption isotherm showed a typical type II sigmoidal shape. The highest moisture content (27.53 %) was obtained at a water activity of 0.9. The water vapour permeability values increased up to 6.34.10(-11) g/ m s Pa as the moisture content of the films increased. Tensile strength, percentage of elongation, Young's modulus, burst strength and distance to burst showed a significant plasticizing effect of the water molecules. Results suggest that interactions between film components and water molecules decrease the transmittance in the UV region and the transparency. Consequently, water molecules improve the UV-barrier properties of the films and increasing the opacity.
机译:该研究的目的是评估水分含量对从再生纤维素和在几种相对湿度条件下平衡的再生纤维素获得的机械,屏障和光学性质的影响。使用Guggenheim-Anderson-Deboer模型安装了实验性水分吸附等温线。吸附等温线显示出典型的II型矩形形状。在0.9的水活性获得最高水分含量(27.53%)。随着薄膜的水分含量增加,水蒸汽渗透率值高达6.34.10(-11)G / M S Pa。拉伸强度,伸长率,杨氏模量,突发强度和突发距离的百分比显示出水分子的显着增塑效果。结果表明,薄膜组分和水分子之间的相互作用降低了UV区域中的透射率和透明度。因此,水分子改善了薄膜的UV阻隔性并增加了不透明度。

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