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Enhanced oxygen-barrier and water-resistance properties of poly(vinyl alcohol) blended with poly(acrylic acid) for packaging applications

机译:增强了聚乙烯醇与聚丙烯酸共混物的阻氧和防水性能,可用于包装应用

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To enhance the oxygen-barrier and water-resistance properties of poly(vinyl alcohol) (PVA) and expand its food packaging applicability, five crosslinked poly(vinyl alcohol)/poly(acrylic acid) (PVA/PAA) blend films were prepared via esterification reactions between hydroxyl groups in PVA and carboxylic acid groups in PAA. The physical characteristics of the blends, including the thermal, barrier, mechanical and optical properties, were investigated as a function of PAA ratio. With increasing PAA content, the crosslinking density was significantly increased, resulting in changes in the chemical structure, morphology and crystallinity of the films. The oxygen transmission rate of pure PVA decreased from 5.91 to 1.59 cc m(-1) day(-1) with increasing PAA ratio. The water resistance, too, increased remarkably. All the blend films showed good optical transparency. The physical properties of the blend films were strongly correlated with the chemical structure and morphology changes, which varied with the PAA content. (c) 2016 Society of Chemical Industry
机译:为了提高聚乙烯醇(PVA)的阻氧性和防水性并扩大其食品包装的适用性,通过以下方法制备了五种交联的聚乙烯醇/聚丙烯酸(PVA / PAA)混合膜PVA中的羟基与PAA中的羧酸之间的酯化反应。研究了共混物的物理特性,包括热,阻隔,机械和光学性能,它们是PAA比的函数。随着PAA含量的增加,交联密度显着增加,导致膜的化学结构,形态和结晶度变化。随着PAA比例的增加,纯PVA的氧气透过率从5.91 cc m(-1)day(-1)降低到1.59 cc m(-1)day(-1)。耐水性也显着提高。所有的共混膜均显示出良好的光学透明性。共混膜的物理性质与化学结构和形态变化密切相关,化学结构和形态变化随PAA含量的变化而变化。 (c)2016年化学工业学会

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