Chemical Modification of Xylan

Djamila Kerrouche, Nabila Rouba, V. Chaleix
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Abstract

Our study is part of the general context of valuing by-products from the wood industry, which consists of the chemical modification of xylan by synthesis of branched copolymers such as xylan-g-PLLA. The used xylan is extracted from chestnut and 4-dimethylaminopyridine (DMAP) is the catalyst. In fact, the synthesis of xylan-graft-poly (L-lactide) copolymer starting from natural and renewable resource products xylan and L-lactide is performed under different conditions. The results of the grafting reaction are unfavorable due to longer time because of depolymerization reactions. Another result is the solubility and insolubility of the copolymers synthesized in water. This first result indicates that there is a change in the properties of xylan. Moreover, the solubility of the xylan-g-PLLA copolymers is different from one study to another. Grafting of PLLA onto xylan was confirmed by Fourier transform infrared (FT-IR) and 1HNMR analyzes. The dynamic mechanical analysis showed that the xylan-g-PLLA plastic materials have interesting thermomechanical properties.
木聚糖的化学改性
我们的研究是评估木材工业副产品的总体背景的一部分,其中包括通过合成支链共聚物(如木聚糖-g- plla)对木聚糖进行化学改性。用木聚糖从板栗中提取,4-二甲氨基吡啶(DMAP)为催化剂。实际上,以天然和可再生资源产品木聚糖和l -丙交酯为原料,在不同的条件下合成了木聚糖-接枝-聚l -丙交酯共聚物。由于解聚反应的时间较长,接枝反应的效果较差。另一个结果是合成的共聚物在水中的溶解度和不溶解度。第一个结果表明木聚糖的性质发生了变化。此外,木聚糖-g- plla共聚物的溶解度在不同的研究中是不同的。傅里叶红外(FT-IR)和核磁共振(1HNMR)分析证实了PLLA接枝到木聚糖上。动态力学分析表明,木聚糖-g- plla塑性材料具有良好的热力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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