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Isolation and Characterization of Nanocellulose with a Novel Shape from Walnut (Juglans Regia L.) Shell Agricultural Waste

机译:核桃壳农业废料中新型形状纳米纤维素的分离与表征

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摘要

Herein, walnut shell (WS) was utilized as the raw material for the production of purified cellulose. The production technique involves multiple treatments, including alkaline treatment and bleaching. Furthermore, two nanocellulose materials were derived from WS by 2,2,6,6-tetramethylpiperidine-1-oxyl radical (TEMPO) oxidation and sulfuric acid hydrolysis, demonstrating the broad applicability and value of walnuts. The micromorphologies, crystalline structures, chemical functional groups, and thermal stabilities of the nanocellulose obtained via TEMPO oxidation and sulfuric acid hydrolysis (TNC and SNC, respectively) were comprehensively characterized. The TNC exhibited an irregular block structure, whereas the SNC was rectangular in shape, with a length of 55–82 nm and a width of 49–81 nm. These observations are expected to provide insight into the potential of utilizing WSs as the raw material for preparing nanocellulose, which could address the problems of the low-valued utilization of walnuts and pollution because of unused WSs.
机译:在此,核桃壳(WS)被用作生产纯化纤维素的原料。生产技术涉及多种处理,包括碱处理和漂白。此外,通过2,2,6,6-四甲基哌啶-1-氧基(TEMPO)氧化和硫酸水解从WS衍生出两种纳米纤维素材料,证明了核桃的广泛适用性和价值。通过TEMPO氧化和硫酸水解(分别为TNC和SNC)获得的纳米纤维素的微观形貌,晶体结构,化学官能团和热稳定性得到了全面表征。 TNC表现出不规则的块状结构,而SNC的形状为矩形,长度为55-82 nm,宽度为49-81 nm。这些观察结果有望提供有关利用WSs作为制备纳米纤维素原料的潜力的见解,这可以解决由于未使用WSs而导致核桃的低价值利用和污染的问题。

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