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Improved mechanical properties of chitosan fibers

机译:改善壳聚糖纤维的机械性能

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摘要

A highly deacetylated chitosan from shrimp with a degree of deacetylation of 95 ± 3% was prepared and spun into a monofilament fiber using a solution of 5% by weight chitosan in 5% by volume aqueous acetic acid. Samples of the spun fibers were immersed in separate solutions containing phosphate ions and phthalate ions, and subsequently washed and dried. The various solutions ranged in pH from 4.12 to 7.75. The highest dry mechanical properties resulted from solutions containing phthalate ions between 4.5-5.5 pH, and from solutions containing phosphate ions at pH 5.4. Immersion time was varied between 1 and 60 min at 25.8°C, and temperature was varied between 25.8 and 70.0°C, in the phosphate ion solutions at a pH of 5.8. Dry mechanical properties were highest at 25.8°C and after 1 h of treatment. Chitosan films were subjected to similar treatments in phosphate and phthalate ion solutions. Fourier transform infrared data (FTIR) on the films suggest that some interaction is occurring between the phosphate ions and the amine group on the chitosan backbone. An additional experiment was performed whereby the same chitosan was used to prepare a dope of 4% by weight chitosan in 4% by volume aqueous acetic acid with 30% by volume methanol. This solution was spun into fibers, but was subjected to a 'final draw' by increasing the speed of the winder. With increasing the final draw, denier and elongation-at-break decreased, while the other mechanical properties showed a marked increase.
机译:制备了虾的高度脱乙酰化的脱乙酰度为95±3%的壳聚糖,并使用5%脱乙酰壳多糖在5%体积的乙酸水溶液中纺成单丝纤维。将纺出的纤维样品浸入含有磷酸根离子和邻苯二甲酸盐离子的单独溶液中,然后洗涤并干燥。各种溶液的pH范围为4.12至7.75。最高的干机械性能是由于pH值为4.5-5.5的邻苯二甲酸盐溶液和pH值为5.4的磷酸盐离子溶液所致。在pH值为5.8的磷酸根离子溶液中,浸入时间在25.8°C下1-60分钟之间变化,温度在25.8-70.0°C之间变化。在25.8°C和1 h处理后,干燥机械性能最高。壳聚糖膜在磷酸盐和邻苯二甲酸盐离子溶液中进行了类似的处理。薄膜上的傅立叶变换红外数据(FTIR)表明,磷酸离子与壳聚糖骨架上的胺基之间发生了某些相互作用。进行另外的实验,其中使用相同的壳聚糖制备在4体积%乙酸水溶液和30体积%甲醇中的4重量%壳聚糖的涂料。将该溶液纺成纤维,但通过提高绕线机的速度进行“最终拉伸”。随着最终拉伸量的增加,旦尼尔和断裂伸长率降低,而其他机械性能显示出明显的提高。

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