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菠萝冠废料中纤维素纳米晶的分离与表征及其潜在用途。

Isolation and characterization of cellulose nanocrystals from pineapple crown waste and their potential uses.

机构信息

Federal University of ABC, Center of Natural and Human Sciences, Av. dos Estados, 5001, Bangu, 09.210-170, Santo André, SP, Brazil.

Federal University of ABC, Center of Natural and Human Sciences, Av. dos Estados, 5001, Bangu, 09.210-170, Santo André, SP, Brazil.

出版信息

Int J Biol Macromol. 2019 Feb 1;122:410-416. doi: 10.1016/j.ijbiomac.2018.10.187. Epub 2018 Oct 29.

Abstract

Pineapple crown is an important source of cellulose that is still going to waste because of the lack of knowledge about their economic uses. The isolation of cellulose nanocrystals (CNC) from pineapple crown leaf (PCL) wastes arises as an important alternative to use PCL wastes in high value-added applications, and has not been reported yet. In this study, CNC were successfully extracted from PCL wastes using chemical treatments followed by acid hydrolysis using sulfuric acid. FTIR results confirmed the removal of the non-cellulosic compounds of PCL through the mercerization and bleaching treatments. SEM and AFM showed that the diameter of PCL fibers was reduced from 18 μm to 39 nm after the hydrolysis reaction, resulting in CNC with rod-like shape. The obtained CNC showed cellulose I crystalline structure with high crystallinity index (73%). The thermal degradation of CNC started at 124 °C, what was attributed to the presence of surface sulfate groups identified by elemental analysis. The high hydrophilicity of CNC was verified by its high moisture content and absorption. The results showed that the CNC isolated from PCL have interesting properties to be used in many liquid media applications, besides their use as reinforcement in nanocomposites.

摘要

菠萝冠是纤维素的重要来源,但由于缺乏对其经济用途的了解,这些纤维素仍然被浪费掉了。从菠萝冠叶(PCL)废料中分离纤维素纳米晶体(CNC)是将 PCL 废料应用于高附加值应用的重要替代方法,但目前尚未有相关报道。在这项研究中,我们使用化学处理法并随后采用硫酸进行酸水解,成功地从 PCL 废料中提取出 CNC。傅里叶变换红外光谱(FTIR)结果证实,通过丝光和漂白处理去除了 PCL 的非纤维素化合物。扫描电子显微镜(SEM)和原子力显微镜(AFM)显示,水解反应后 PCL 纤维的直径从 18μm 减小到 39nm,从而得到了具有棒状形状的 CNC。所得到的 CNC 表现出纤维素 I 型结晶结构,具有较高的结晶度指数(73%)。CNC 的热降解始于 124℃,这归因于元素分析所鉴定的表面硫酸基团的存在。CNC 的高亲水性通过其高水分含量和吸收性得到了验证。结果表明,从 PCL 中分离出的 CNC 具有在许多液体介质应用中使用的有趣特性,除了将其用作纳米复合材料中的增强剂之外。

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