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Cellulose nanofibers from white and naturally colored cotton fibers

机译:白色和天然彩色棉纤维制成的纤维素纳米纤维

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Suspensions of white and colored nanofibers were obtained by the acid hydrolysis of white and naturally colored cotton fibers. Possible differences among them in morphology and other characteristics were investigated. The original fibers were subjected to chemical analysis (cellulose, lignin and hemicellulose content), X-ray diffraction (XRD) analysis, and scanning electron microscopy (SEM). The nanofibers were analyzed with respect to yield, elemental composition (to assess the presence of sulfur), zeta potential, morphology (by scanning transmission electron microscopy (STEM)) and atomic force microscopy (AFM), crystallinity (XRD) and thermal stability by thermogravimetric analysis in air under dynamic and isothermal temperature conditions. Morphological study of several cotton nanofibers showed a length of 85-225 nm and diameter of 6-18 nm. The micrographs also indicated that there were no significant morphological differences among the nanostructures from different cotton fibers. The main differences found were the slightly higher yield, sulfonation effectiveness and thermal stability under dynamic temperature conditions of the white nanofiber. On the other hand, in isothermal conditions at 180 A degrees C, the colored nanofibers showed a better thermal stability than the white.
机译:白色和彩色纳米纤维的悬浮液是通过白色和天然彩色棉纤维的酸水解获得的。研究了它们之间在形态和其他特征上可能的差异。对原始纤维进行化学分析(纤维素,木质素和半纤维素含量),X射线衍射(XRD)分析和扫描电子显微镜(SEM)。分析了纳米纤维的产率,元素组成(以评估硫的存在),ζ电势,形态(通过扫描透射电子显微镜(STEM))和原子力显微镜(AFM),结晶度(XRD)和热稳定性。动态和等温温度条件下空气中的热重分析。几种棉纳米纤维的形态研究表明,其长度为85-225 nm,直径为6-18 nm。显微照片还表明,来自不同棉纤维的纳米结构之间没有明显的形态学差异。发现的主要区别是在动态温度条件下,白色纳米纤维的收率,磺化效率和热稳定性略高。另一方面,在180 A的等温条件下,有色纳米纤维显示出比白色更好的热稳定性。

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