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Effect of Clay Nanofillers on the Mechanical and Water Vapor Permeability Properties of Xylan–Alginate Films

机译:粘土纳米填料对木聚糖膜膜机械蒸汽渗透性能的影响

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摘要

In this study, xylan–alginate-based films were reinforced with nanoclays (bentonite or halloysite) by the solvent casting technique. The effect of the nanoclay loadings (1–5 wt %) on various properties—mechanical, optical, thermal, solubility, water sorption, and water vapor permeability (WVP)—of the xylan–alginate films were examined for their application as food packaging materials. A 5 wt % loading of either bentonite or halloysite resulted in a 49% decrease of the WVP due to the impermeable nature of the silicate layers that make up both bentonite and halloysite. Thermal stability and solubility of the nanocomposite films were not significantly influenced by the presence of the nanoclays, whereas the optical properties were significantly improved when compared to neat xylan–alginate blend. In general, films reinforced with bentonite exhibited superior mechanical and optical properties when compared to both halloysite-based nanocomposite and neat films.
机译:在该研究中,通过溶剂浇铸技术用纳米粘土(膨润土或霍金矿)加强了基于木聚糖的薄膜。纳米粘土载荷(1-5wt%)对各种性能 - 机械,光学,热,溶解度,水吸附和水蒸气渗透率(WVP)-OF的效果被检查为其作为食品包装的应用材料。由于硅酸盐层的不可渗透性,5wt%负载膨润土或霍氏铁矿,导致WVP减少49%,硅酸盐层的不可渗透性质。与纳米粘土的存在没有显着影响纳米复合膜的热稳定性和溶解度,而与纯木瓜 - 藻酸盐共混物相比,光学性质显着提高。通常,与霍氏铁矿石的纳米复合材料和整齐的薄膜相比,用膨润土增强的薄膜表现出优异的机械和光学性能。

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