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Water barrier properties of starch films reinforced with cellulose nanocrystals obtained from sugarcane bagasse

机译:甘蔗渣制得的纤维素纳米晶体增强淀粉膜的阻水性能

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摘要

Water transport in edible films based on hydrophilic materials such as starch, is a complex phenomenon due to the strong interaction of sorbed water molecules with the polymeric structure. Cellulose nanocrystals (CNC) were obtained from sugarcane bagasse. Starch and starch/CNC films were formulated and their water barrier properties were studied. The measured film solubility, contact angle, and water sorption isotherm indicated that reinforced starch/CNC films have a lower affinity to water molecules than starch films. The effects that the driving force and the water activity (a_w) values at each side of the film have on permeability were analyzed. Permeability, diffusivity, and solubility coefficients indicated that the permeation process depends mostly on the tortuous pathway formed by the incorporation of CNC and therefore were mainly controlled by water diffusion. The interaction between CNC and starch chain is favoured by the chemical similarities of both molecules.
机译:由于吸附的水分子与聚合物结构之间的强烈相互作用,基于亲水性材料(例如淀粉)的可食用薄膜中的水传输是一个复杂的现象。纤维素纳米晶体(CNC)获自甘蔗渣。配制淀粉和淀粉/ CNC薄膜,并研究其阻水性能。测量的膜溶解度,接触角和吸水等温线表明,增强的淀粉/ CNC膜对水分子的亲和力比淀粉膜低。分析了薄膜两侧的驱动力和水活度(a_w)值对渗透率的影响。渗透率,扩散率和溶解度系数表明,渗透过程主要取决于通过掺入CNC形成的曲折路径,因此主要受水扩散控制。两个分子的化学相似性促进了CNC与淀粉链之间的相互作用。

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