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Isolation and Rheological Characterization of Cellulose Nanofibrils (CNFs) from Coir Fibers in Comparison to Wood and Cotton

机译:与木材和棉花相比椰壳纤维中纤维素纳米原纤维(CNF)的分离和流变特性

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摘要

In this report, the isolation and rheological characterization of cellulose nanofibrils from coir (CNFs-1) were studied and compared with the CNFs from wood (CNFs-2) and cotton (CNFs-3). Cellulose nanofibrils were isolated successfully from coir fibers by chemical treatments followed by ultrasonic fibrillation. During ultrasonic processing, the size and the crystal structure of the CNFs were influenced by the raw materials. In comparison to CNFs-2 and CNFs-3, CNFs-1 from coir fibers presented diverse advantages, such as sufficient fibrillation with a low diameter distribution, in the range of 2–4 nm and high crystallinity. In the dynamic rheology study of CNFs-1, elastic behavior was observed and maintained due to the formation of gel-like steady network structures, which could not be easily deconstructured by frequency shearing and temperature changing. All results indicated that coir fibers could be used as a valuable resource for the preparation of CNFs, which exhibited comparable properties with those isolated from wood, in regard to morphology and rheological properties. This work provides a basis for further advanced applications using the CNFs isolated from coir fibers.
机译:在本报告中,研究了椰壳纤维(CNFs-1)中纤维素纳米原纤维的分离和流变特性,并将其与木材(CNFs-2)和棉花(CNFs-3)中的纤维素纳米纤维进行了比较。通过化学处理然后超声原纤化,成功地从椰壳纤维中分离出纤维素纳米原纤维。在超声波处理过程中,CNF的尺寸和晶体结构受原材料影响。与CNFs-2和CNFs-3相比,来自椰壳纤维的CNFs-1具有多种优势,例如在2-4 nm范围内具有低直径分布的充分原纤化和高结晶度。在CNFs-1的动态流变学研究中,由于形成了凝胶状的稳定网络结构,因此观察到并保持了弹性行为,而这种结构很难通过频率剪切和温度变化来解构。所有结果表明,椰壳纤维可以用作制备CNF的有价值的资源,就形态和流变特性而言,其表现出与从木材分离出的可比性能。这项工作为使用从椰壳纤维中分离出来的CNF进行进一步的高级应用提供了基础。

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