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Preparation and characterization of the ribbon-like cellulose nanocrystals by the cellulase enzymolysis of cotton pulp fibers

机译:棉纸浆纤维纤维素酶解的制备与表征纤维素酶酶的纤维素酶

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摘要

The enzymolytic preparation of cellulose nanocrystals (CNCs) has the unique advantages due to its green chemistry process. In this work, the cotton pulp fibers were enzymolyzed with the cellulase to prepare the ribbon-like CNC, and the samples were characterized by SEM, FTIR, XRD and DLS. The results indicated the CNC with the length 250-900 nm and width 30-45 nm could be produced from cotton pulp fibers at the lower cellulase concentration, the time 5-11 h and temperature 50 degrees C. When the cellulase concentration rose up to 100 /ml, the granular CNC appeared, and at 300 mu/ml all of the formed CNC were granular. FTIR and XRD analyses proved that the ribbon-like CNC had the same crystal style and chemical structure with original cotton pulp fibers, but its crystallinity was weakened slightly. Despite the fact that there are the weakened crystallinity and aggregates, the as-prepared samples were still called as CNCs for simplicity. In addition, the article has discussed the mechanism for the forming ribbon-like CNC from the enzymolysis of cotton pulp fibers.
机译:纤维素纳米晶体(CNC)的酶化制剂由于其绿色化学过程具有独特的优势。在这项工作中,用纤维素酶键解键解键以制备带状的CNC,并通过SEM,FTIR,XRD和DLS表征样品。结果表明,具有长度250-900nm的CNC,宽度30-45nm可以在较低纤维素酶浓度下由棉纸纤维产生,时间5-11小时和温度50℃。当纤维素酶浓度上升到时100 / mL,粒状CNC出现,并且在300μm/ mL中,所有形成的CNC都是颗粒状的。 FTIR和XRD分析证明,带状的CNC具有与原始棉纸浆纤维相同的晶体风格和化学结构,但其结晶度略微减弱。尽管存在弱的结晶度和聚集体,但是为简单起见,仍称为CNC的原制样品。此外,本文已经讨论了从棉纸纤维的酶解形成带状CNC的机制。

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