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草酸和硫酸水解对菠萝渣制备纤维素纳米纤维和纳米纸的影响及性能的影响。

Effect of oxalic acid and sulphuric acid hydrolysis on the preparation and properties of pineapple pomace derived cellulose nanofibers and nanopapers.

机构信息

Department of Applied Chemistry, Cochin University of Science and Technology (CUSAT), Kerala Pin 682022, India.

Department of Chemistry, Sacred Heart College (Autonomous), Kochi, Kerala Pin-682013, India.

出版信息

Int J Biol Macromol. 2022 Jun 1;209(Pt B):1745-1759. doi: 10.1016/j.ijbiomac.2022.04.138. Epub 2022 Apr 22.

DOI:10.1016/j.ijbiomac.2022.04.138
PMID:35469954
Abstract

Nanocellulose is the "green magnet" which attracts a wide spectrum of industries towards it due to its availability, biodegradability, and possible smart applications. For the first time, pineapple pomace was being explored as an economic precursor for cellulose nanofibers. Nanofiber isolation was accomplished using a chemo-mechanical method and solution casting was adopted for the development of nanopapers. Moreover, the study examines the structural, optical, crystalline, dimensional, and thermal features of nanofibers isolated using different acid hydrolysis (oxalic acid and sulphuric acid) methods. Fourier-transform infra-red spectroscopy, C solid-state nuclear magnetic resonance spectroscopy, and X-ray diffraction analysis indicated the presence of type I cellulose. The transmittance, crystallinity index, and thermal stability of PPNFS (sulphuric acid treated fiber) were greater than PPNFO (oxalic acid treated fiber). The transmission electron microscopy and dynamic light scattering analysis confirmed the nanodimension of PPNFO and PPNFS. While comparing the optical and mechanical properties of nanopapers, PPNFS outperforms PPNFO. The tensile strength of the prepared nanopapers (64 MPa (PPNFO) and 68 MPa (PPNFS)) was found to be high compared to similar works reported in the literature. The prepared nanopaper is proposed to be used for food packaging applications.

摘要

纳米纤维素是一种“绿色磁铁”,由于其可用性、生物降解性和潜在的智能应用,吸引了广泛的行业关注。菠萝渣首次被探索为纤维素纳米纤维的经济型前体。使用化学机械方法进行纳米纤维分离,并采用溶液浇铸法开发纳米纸。此外,该研究还考察了使用不同酸水解(草酸和硫酸)方法分离得到的纳米纤维的结构、光学、结晶、尺寸和热特性。傅里叶变换红外光谱、C 固体核磁共振光谱和 X 射线衍射分析表明存在纤维素 I 型。硫酸处理纤维(PPNFS)的透光率、结晶度指数和热稳定性均大于草酸处理纤维(PPNFO)。透射电子显微镜和动态光散射分析证实了 PPNFO 和 PPNFS 的纳米尺寸。在比较纳米纸的光学和机械性能时,PPNFS 优于 PPNFO。所制备的纳米纸(PPNFO 为 64 MPa,PPNFS 为 68 MPa)的拉伸强度与文献中报道的类似工作相比较高。所制备的纳米纸有望用于食品包装应用。

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