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原生物质和堿处理后的五桠果(Grewia Flavescens)天然纤维的特性。

Characterization of raw and alkali treated cellulosic Grewia Flavescens natural fiber.

机构信息

Department of Mechanical Engineering, National Institute of Technology Patna, Patna, Bihar, India.

Department of Mechanical Engineering, National Institute of Technology Patna, Patna, Bihar, India.

出版信息

Int J Biol Macromol. 2022 Jun 1;209(Pt B):1933-1942. doi: 10.1016/j.ijbiomac.2022.04.169. Epub 2022 Apr 27.

Abstract

The physicochemical, mechanical, thermal as well as morphological characteristics of alkali treated cellulosic Grewia Flavescens are reported in this paper. Using standard test methods, the chemical constituents of Grewia Flavescens fiber (GFF) are evaluated. Fiber treated in 5% (w/v) NaOH for 45 min soaking time is regarded as optimally surface-modified fiber. After optimal alkalization, there is an enhancement of cellulose content from 58.46% to 68.31%. Mechanical properties of GFF are determined by single fiber tensile test and improved tensile strength is achieved after alkalization. Weibull statistical analysis is performed for diameter and mechanical parameters of raw as well as treated GFF. FTIR spectroscopy reveals the removal of amorphous material from the fiber post-treatment and XRD analysis confirms improvement in crystallinity index from 16.01% to 26.72% and crystal size from 62.90 nm to 68.43 nm after alkalization. Thermal stability and thermal degradation temperature are found to be improved after alkali treatment. Morphological analysis of raw and alkali treated cellulosic GFF shows enhanced rough surface of fiber after alkalization because of elimination of impurities and foreign particles from the fiber surface. Presently studied GFF seems to be a good substitute to the harmful man-made fibers for making of bio composites.

摘要

本文报道了碱处理的纤维素番石榴的物理化学、力学、热学和形态特征。使用标准测试方法评估了番石榴纤维(GFF)的化学成分。经 5%(w/v)NaOH 处理 45 min 浸泡时间的纤维被认为是最佳表面改性纤维。碱化后,纤维素含量从 58.46%增加到 68.31%。通过单纤维拉伸试验测定 GFF 的力学性能,碱化后拉伸强度得到提高。对原纤维和处理后的 GFF 的直径和力学参数进行了威布尔统计分析。FTIR 光谱显示,纤维后处理去除了无定形物质,XRD 分析证实结晶度指数从 16.01%提高到 26.72%,结晶尺寸从 62.90nm 提高到 68.43nm。碱处理后,热稳定性和热降解温度提高。原纤维和碱处理的纤维素番石榴的形态分析表明,碱处理后纤维表面粗糙度增加,因为纤维表面的杂质和外来颗粒被去除。目前研究的 GFF 似乎是一种很好的人造纤维替代品,可用于制造生物复合材料。

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