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从槟榔废弃物中提取纤维素纳米晶及其在环保型生物复合材料薄膜中的应用。

Extraction of cellulose nanocrystals from areca waste and its application in eco-friendly biocomposite film.

机构信息

Department of Food Process Engineering, Postharvest Research Lab, School of Bioengineering, SRM Institute of Science and Technology, Potheri, Kattankulathur, 603203, Chengalpattu District, Tamilnadu, India; College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, 310058, China; Department of Biotechnology, School of Bioengineering, SRM Institute of Science and Technology, Potheri, Kattankulathur, 603203, Chengalpattu District, Tamilnadu, India.

Department of Food Process Engineering, Postharvest Research Lab, School of Bioengineering, SRM Institute of Science and Technology, Potheri, Kattankulathur, 603203, Chengalpattu District, Tamilnadu, India; College of Animal Science, Zhejiang University, Hangzhou, 310058, China; Department of Biotechnology, School of Bioengineering, SRM Institute of Science and Technology, Potheri, Kattankulathur, 603203, Chengalpattu District, Tamilnadu, India.

出版信息

Chemosphere. 2022 Jan;287(Pt 2):132084. doi: 10.1016/j.chemosphere.2021.132084. Epub 2021 Aug 30.

Abstract

Areca nut husk fibers are easily available and they are abundant agricultural waste, whose utilization to high value products needs more attention. The present study aims at the extraction of cellulose nanocrystals (CNCs) from areca nut husk fibers and the evaluation of its reinforcement capacity in polyvinyl alcohol (PVA) and chitosan (CS) film. The CNC showed rod-like structures, which were confirmed by TEM and AFM analysis. The diameter of the isolated CNC was 19 ± 3.3 nm; the length was about 195 ± 24 nm with an aspect ratio of 10.2 ± 6.8. The zeta potential of CNC was -15.3 ± 1.2 mV. Fourier Transform Infrared Spectroscopy analysis showed that the non-cellulosic compounds were effectively eliminated, and the X-ray diffraction results showed that CNC had higher crystallinity than the raw, alkali, and the bleached fibers. Thermogravimetric analysis revealed good thermal stability for the CNC. Moreover, the effects of the incorporation of CNC on the optical and tensile behaviours of the bionanocomposite film were investigated. The bionanocomposite film retained the same transparency as the PVA/CS film, indicating that the CNC was disseminated evenly in the film. The incorporation of CNC (3 wt%) to the PVA/CS film enhanced the tensile strength of the bionanocomposite film (9.46 ± 1.6 MPa) when compared to the control films (7.81 ± 1.4 MPa). Furthermore, the prepared nanobiocomposite film exhibited good antimicrobial activity against foodborne pathogenic bacteria and postharvest pathogenic fungi. These findings suggest that the bionanocomposite film might be suitable for food packaging applications.

摘要

槟榔壳纤维易得且丰富,属于农业废弃物,其向高附加值产品的利用需要得到更多关注。本研究旨在从槟榔壳纤维中提取纤维素纳米晶体(CNC),并评估其在聚乙烯醇(PVA)和壳聚糖(CS)薄膜中的增强能力。CNC 呈现棒状结构,这通过 TEM 和 AFM 分析得到了证实。分离出的 CNC 的直径为 19±3.3nm;长度约为 195±24nm,长宽比为 10.2±6.8。CNC 的 Zeta 电位为-15.3±1.2mV。傅里叶变换红外光谱分析表明,非纤维素化合物已被有效去除,X 射线衍射结果表明 CNC 的结晶度高于原纤维、碱处理纤维和漂白纤维。热重分析表明 CNC 具有良好的热稳定性。此外,还研究了 CNC 的加入对生物纳米复合材料薄膜的光学和拉伸性能的影响。生物纳米复合材料薄膜与 PVA/CS 薄膜具有相同的透光率,表明 CNC 均匀地分散在薄膜中。与对照薄膜(7.81±1.4MPa)相比,将 CNC(3wt%)加入 PVA/CS 薄膜中可提高生物纳米复合材料薄膜的拉伸强度(9.46±1.6MPa)。此外,所制备的纳米生物复合材料薄膜对食源性病原体细菌和采后病原真菌具有良好的抗菌活性。这些发现表明,该生物纳米复合材料薄膜可能适用于食品包装应用。

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