College of Food Science and Nutritional Engineering, China Agricultural University, Beijing, China.
National Engineering Research Center for Fruits and Vegetable Processing, Beijing, China.
J Sci Food Agric. 2022 Jan 15;102(1):312-321. doi: 10.1002/jsfa.11360. Epub 2021 Jun 22.
Sugarcane straw is an available but largely ignored lignocellulosic biomass to obtain cellulose nanocrystals (CNCs) with highly crystalline, tunable surface chemistries and a wide-ranging adaptability. Herein, we utilized sugarcane straw to obtain pure cellulose via purification processes, followed by subsequent preparation of CNCs via sulfuric acid hydrolysis. The properties of the purified fibers and obtained CNCs were assessed by their composition, morphology, chemical structure, crystallinity and thermal stability.
After the purification process, alkali-treated fibers (ATFs) contained 886.33 ± 1.25 g kg cellulose, and its morphological analysis revealed a smooth and slender fibrous structure. The CNCs obtained by treatment with 64 wt% sulfuric acid at 45 °C for 60 min were isolated in a yield of 21.8%, with a diameter and length of 6 to 10 nm and 160 to 200 nm, respectively. Moreover, crystallinity index of these CNCs reached 62.66%, and thermal stability underwent a two-step degradation. Short-term ultrasonication after hydrolysis was employed to enhance isolation of the CNC particles and improve the anionic charge with higher value -38.00 mV.
Overall, isolation and characterization results indicated the potential for CNCs preparation using sugarcane straw, in addition to offering a fundamental understanding of this material and indicating potential applications. © 2021 Society of Chemical Industry.
甘蔗秸秆是一种可用但在很大程度上被忽视的木质纤维素生物质,可用于获得具有高结晶度、可调表面化学性质和广泛适应性的纤维素纳米晶体(CNC)。在此,我们利用甘蔗秸秆通过提纯工艺获得纯纤维素,然后通过硫酸水解制备 CNC。通过其组成、形态、化学结构、结晶度和热稳定性来评估提纯纤维和获得的 CNC 的性质。
经过提纯工艺,碱处理纤维(ATFs)含有 886.33±1.25g/kg 的纤维素,其形态分析显示出光滑细长的纤维结构。在 45°C 下用 64wt%硫酸处理 60min 后,以 21.8%的产率分离出 CNC,其直径和长度分别为 6 至 10nm 和 160 至 200nm。此外,这些 CNC 的结晶度指数达到 62.66%,热稳定性经历了两步降解。水解后进行短期超声处理可增强 CNC 颗粒的分离,并提高带更高负电荷 -38.00mV 的阴离子电荷。
总体而言,分离和表征结果表明,利用甘蔗秸秆制备 CNC 具有潜力,此外还为该材料提供了基本的理解,并表明了潜在的应用。© 2021 英国化学学会。