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首页> 外文期刊>Journal of Applied Polymer Science >Functional hybrid fibers of cellulose/microcrystalline chitosan. I. Manufacture of viscose/microcrystalline chitosan fibers
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Functional hybrid fibers of cellulose/microcrystalline chitosan. I. Manufacture of viscose/microcrystalline chitosan fibers

机译:纤维素/微晶壳聚糖的功能杂化纤维。一,粘胶/微晶壳聚糖纤维的生产

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Blends of microcrystalline chitosan (MCCh) with cellulose xhanthate alkaline solutions were prepared to investigate the effects of aqueous MCCh gel concentration and additives on the spinnability of hybrid cellulose/chitosan fibers and their properties. The properties of the spinning solution were mainly dependent on the concentration of MCCh in the aqueous gel-like dispersion and the amount mixed into the cellulose xhanthate solution. Sodium alginate chemically close to cellulose and chitosan was used as an additive to improve the miscibility of chitosan due to the ionic bonds formed with chitosan 2-amino groups. Using an optimized ratio of 2 : 1 of MCCh to the sodium alginate, a maximum of 6% of MCCh calculated from alpha-cellulose content could be introduced into the sodium xhanthate solution containing originally 9% of alpha-cellulose. The yield of MCCh in the resulting fibers was dependent on the molecular mass, and varied between 73- 82%. The strength, elongation, and color of the resulting hybrid fibers were only slightly changed and the WRV remarkably increased compared to standard fibers. (C) 2000 John Wiley & Sons, Inc. [References: 16]
机译:制备了微晶壳聚糖(MCCh)与黄原酸纤维素碱性溶液的共混物,以研究含水MCCh凝胶浓度和添加剂对纤维素/壳聚糖杂化纤维可纺性及其性能的影响。纺丝溶液的性能主要取决于凝胶状水分散体中MCCh的浓度和混入纤维素黄原酸酯溶液中的量。由于与壳聚糖2-氨基形成的离子键,化学上接近纤维素和壳聚糖的海藻酸钠被用作添加剂,以改善壳聚糖的可混溶性。使用MCCh与藻酸钠的最佳比例为2:1,可以将由α-纤维素含量计算出的最多6%的MCCh引入到最初含有9%α-纤维素的黄原酸钠溶液中。所得纤维中MCCh的产率取决于分子量,且在73-82%之间变化。与标准纤维相比,所得杂化纤维的强度,伸长率和颜色仅略有变化,并且WRV显着增加。 (C)2000 John Wiley&Sons,Inc. [参考:16]

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