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来自纤维的天然纤维素:提取与表征

Natural Cellulose from Fibers: Extraction and Characterization.

作者信息

Amior Aicha, Satha Hamid, Laoutid Fouad, Toncheva Antoniya, Dubois Philippe

机构信息

Laboratoire LSPN, Université 8 Mai 1945 Guelma, BP 401, Guelma 24000, Algeria.

Laboratory of Polymeric and Composite Materials, Materia Nova Materials R&D Center & UMons Innovation Center, 7000 Mons, Belgium.

出版信息

Materials (Basel). 2022 Dec 31;16(1):385. doi: 10.3390/ma16010385.

Abstract

Nowadays, due to their natural availability, renewability, biodegradability, nontoxicity, light weight and relatively low cost, natural fibers, especially lignocellulosic fibers, present attractive potential to substitute non-eco-friendly synthetic fibers. In this study, fibers were used, thanks to their low lignin content, as an alternative of renewable resource for the production of cellulosic fibers with suitable characteristics and minimal time and energy consumption. In fact, due to their valuable chemical composition, it was possible to remove the amorphous fractions and impurities from the fiber surface by applying ultrasounds coupled with alkaline treatment (80 °C, 5 wt.% NaOH), followed by a bleaching step. The efficient dissolution of the noncellulosic compounds was confirmed by Fourier Transform Infrared Spectroscopy (FTIR). The resulted increase in the crystallinity index (from 35.7% to 57.5%), occurred without impacting the crystalline structure of the fibers. The morphological analysis of the fibers evidences the higher surface area of the obtained fibers. Based on the obtained results, Ziziphus jujuba fibers were found to present a suitable sustainable source for the production of cellulosic fibers.

摘要

如今,由于天然纤维,尤其是木质纤维素纤维具有天然可得性、可再生性、生物可降解性、无毒、重量轻以及成本相对较低等特点,它们展现出替代不环保合成纤维的诱人潜力。在本研究中,由于其木质素含量低,这些纤维被用作一种可再生资源的替代品,用于生产具有合适特性且时间和能源消耗最小的纤维素纤维。事实上,由于其有价值的化学成分,可以通过结合超声波和碱性处理(80°C,5 wt.% NaOH),然后进行漂白步骤,从纤维表面去除无定形部分和杂质。傅里叶变换红外光谱(FTIR)证实了非纤维素化合物的有效溶解。结晶度指数的增加(从35.7%提高到57.5%),且并未影响纤维的晶体结构。纤维的形态分析表明所获得纤维的表面积更大。基于所得结果,发现酸枣纤维是生产纤维素纤维的合适可持续来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87df/9821990/fa9b414d5a69/materials-16-00385-g001.jpg

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