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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Characterization of surface-modified natural cellulosic fiber extracted from the root of Ficus religiosa tree
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Characterization of surface-modified natural cellulosic fiber extracted from the root of Ficus religiosa tree

机译:从榕树根系中提取表面改性天然纤维素纤维的特征

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The foremost intention of this work is to test the suitability of the Ficus religiosa Root Fiber (FRRF) as the better reinforcement for the natural fiber-reinforced composite structures. In the current work, the attempts have been made with the view of improving the physical, thermal, chemical, surface, and crystalline properties of FRET employing 5 wt% of NaOH solution. Five samples of FRRF have been prepared by soaking the raw fiber in the alkali solution under different soaking times. The thermogravimetric analysis results reveal that the alkali-treated FRRF soaked for 60 min holds a maximum range of thermal stability (improved by 9.54%); in turn, the remaining analyses have been carried out with that fiber samples. The increased quantity of cellulose contents was witnessed over the surface of treated FRRF. The improvement in the CI from 42.92-48.64% was noted as the result of X-Ray Diffraction test. The morphology study results ensured that the surface of the treated FRRF became so rough comparably, which confirms the removal of unwanted wax and impurities on the fiber surface. All the above observations validated that the proposed fiber is suitable to prepare the composite structures after the optimal alkali treatment. (C) 2020 Elsevier B.V. All rights reserved.
机译:这项工作的最重要意图是测试Ficus Religiosa根纤维(FRRF)的适用性作为天然纤维增强复合结构的更好的增强。在目前的工作中,通过改善使用5wt%的NaOH溶液的褶皱的物理,热,化学,表面和结晶性能来进行尝试。通过在不同浸泡时间下浸泡碱溶液中的原料纤维来制备五个FRRF样品。热重分析结果表明,浸渍60分钟的碱处理的FRRF持有最大热稳定范围(提高9.54%);反过来,已经使用该纤维样品进行了剩余的分析。在处理过的FRRF的表面上见到纤维素含量的增加。根据X射线衍射试验的结果,注意到CI的改善。形态学研究结果确保了处理过的FRRF的表面比较粗糙,这证实了去除纤维表面上的不需要的蜡和杂质。上述所有观察结果验证了所提出的纤维适用于在最佳碱处理后制备复合结构。 (c)2020 Elsevier B.v.保留所有权利。

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