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Extraction of Cellulose Nanofibers via Eco-friendly Supercritical Carbon Dioxide Treatment Followed by Mild Acid Hydrolysis and the Fabrication of Cellulose Nanopapers

机译:环保超临界二氧化碳处理后轻度酸水解提取纤维素纳米纤维然后制备纤维素纳米纸

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摘要

The conventional isolation of cellulose nanofibers (CNFs) process involves high energy input which leads to compromising the pulp fiber’s physical and chemical properties, in addition to the issue of elemental chlorine-based bleaching, which is associated with serious environmental issues. This study investigates the characteristic functional properties of CNFs extracted via total chlorine-free (TCF) bleached kenaf fiber followed by an eco-friendly supercritical carbon dioxide (SC-CO ) treatment process. The Fourier transmission infra-red FTIR spectra result gave remarkable effective delignification of the kenaf fiber as the treatment progressed. TEM images showed that the extracted CNFs have a diameter in the range of 10–15 nm and length of up to several micrometers, and thereby proved that the supercritical carbon dioxide pretreatment followed by mild acid hydrolysis is an efficient technique to extract CNFs from the plant biomass. XRD analysis revealed that crystallinity of the fiber was enhanced after each treatment and the obtained crystallinity index of the raw fiber, alkali treated fiber, bleached fiber, and cellulose nanofiber were 33.2%, 54.6%, 88.4%, and 92.8% respectively. SEM images showed that amorphous portions like hemicellulose and lignin were removed completely after the alkali and bleaching treatment, respectively. Moreover, we fabricated a series of cellulose nanopapers using the extracted CNFs suspension via a simple vacuum filtration technique. The fabricated cellulose nanopaper exhibited a good tensile strength of 75.7 MPa at 2.45% strain.
机译:纤维素纳米纤维(CNFs)的常规分离过程涉及高能量输入,这不仅会损害纸浆纤维的物理和化学性质,还会引发基于氯的单质漂白问题,而漂白问题与严重的环境问题相关。这项研究调查了通过全无氯(TCF)漂白洋麻纤维提取的CNF的功能特性,然后再采用生态友好的超临界二氧化碳(SC-CO)处理工艺。随着处理的进行,傅立叶透射红外FTIR光谱结果给出了洋麻纤维的显着有效去木质素作用。 TEM图像显示,提取的CNF的直径在10-15 nm范围内,长度可达几微米,因此证明了超临界二氧化碳预处理后进行轻度酸水解是从植物中提取CNF的有效技术。生物质。 XRD分析表明,每次处理后纤维的结晶度均得到提高,并且所获得的原始纤维,碱处理纤维,漂白纤维和纤维素纳米纤维的结晶指数分别为33.2%,54.6%,88.4%和92.8%。 SEM图像显示,分别在碱和漂白处理之后,半纤维素和木质素等无定形部分被完全去除。此外,我们使用提取的CNF悬浮液通过简单的真空过滤技术制备了一系列纤维素纳米纸。所制备的纤维素纳米纸在2.45%应变下表现出75.7MPa的良好拉伸强度。

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