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Thermally stable, enhanced water barrier, high strength starch bio-composite reinforced with lignin containing cellulose nanofibrils

机译:热稳态,增强的水屏障,高强度淀粉生物复合材料加强了含木质素的纤维素纳米纤维

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摘要

Lignin containing cellulose nanofibrils (LCNF) were obtained by mechanically fibrillating unbleached tree bark after alkaline extraction and used as a reinforcement in thermoplastic starch (TPS) to develop novel biodegradable composite films. With the addition of 15 wt % LCNF, the tensile strength and modulus of the composites increased by 319 % and 800 % compared to neat TPS films, respectively. The crystalline property of cellulose and the high interaction between TPS and LCNF improved the mechanical property of the composite films. The composite film T-onset and T-max were 263.1 degrees C and 316.5 degrees C, respectively, compared to 250.5 degrees C and 297.3 degrees C for neat TPS. The composite films also showed higher water barrier property. Experimental results showed that LCNF features a high lignin content. Lignin, a natural polymer, contains hydrophobic and aromatic groups and, thus, can increase the water barrier property and thermal stability of TPS/LCNF composite films.
机译:通过在碱性萃取后机械纤维化的树皮机械纤维化的树皮获得,用作热塑性淀粉(TPS)中的增强来获得木质素,以产生新型可生物降解的复合膜。 随着15wt%LCNF的加入,与整齐TPS薄膜分别相比,复合材料的拉伸强度和模量增加了319%和800%。 纤维素的结晶性能及TPS与LCNF的高相互作用改善了复合膜的力学性质。 与250.5℃和297.3摄氏度相比,复合膜T-uneSt和T-Max分别为263.1℃和316.5摄氏度。 复合薄膜还显示出更高的水阻隔性。 实验结果表明,LCNF具有高木质素含量。 木质素是天然聚合物,含有疏水性和芳族基团,因此可以提高TPS / LCNF复合膜的水阻隔性和热稳定性。

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