纺织废棉制备纳米纤维素的研究进展

A. S. F. Mahamude, W. Harun, K. Kadirgama, K. Farhana, D. Ramasamy
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引用次数: 0

摘要

棉纤维的应用不受限制,是所有纤维中使用最多的天然纤维。棉纤维素是一种线性生物高聚物,棉花是最丰富的天然纤维,也是最受欢迎的直接从自然界生产的天然人体服装的天然纤维。在服装制造过程中,每年有大量的棉纤维变成废物。本文旨在评价利用该废棉制备纳米纤维素或纳米晶纤维素的性能。因此,对纺纱行业的废棉情况、废棉统计以及纺纱行业的纳米纤维进行了细致的研究。综述了纳米纤维素材料的制备技术、废棉来源、纳米纤维素的物理结构。纳米纤维素是用多种方法制备的,包括生物、机械、有机机械、细菌和酶的过程,以及各种化学物质。在这一阶段具有高比例和高热效率的纳米纤维素制备工艺为棉花的替代再利用铺平了道路。纳米纤维素在商业上很受欢迎,但它不能以高价在整个市场上使用,但废棉花是解决食品供应、药品供应、军队服装和纺织品廉价终端价格的解决方案。由于废棉在市场上非常便宜,并转化为有价值的产品,它将是一种增值产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Short Review of Nano-Cellulose Preparation from Textile Spinning Waste Cotton
Cotton fiber is the most used natural fiber among all other fibers as its application is not bound to the restriction. Cotton cellulose is a linear biopolymer and cotton is the most abundant as well as the most popular natural fiber for preparing natural human apparel that directly produces from nature. In the process of apparel manufacturing, each year huge amount of cotton fiber turns into waste. This paper aims to evaluate the preparation of nano-cellulose or nanocrystal cellulose from this waste cotton. Therefore, the waste cotton scenario of the spinning industry, statistics of waste cotton, and nanofiber in the spinning industry studied elaborately. Besides, this review describes the nano-cellulose materials preparation techniques, cotton waste source, nano-cellulose physical structure. Nanocellulose is prepared using a variety of methods, including biological, mechanical, organic mechanical, bacterial, and enzyme processes, as well as a variety of chemicals. Nano-cellulose preparation processes with a high proportion aspect and strong thermal efficiency in this phase pave the way for alternative cotton reuse. Nano-cellulose has become commercially popular, but it cannot be used across the market at a high price, but waste cotton is the solution for the cheap end price for food supply, drug supply, army dress, and textiles. Due to the availability of waste cotton in very cheap in market and conversion to valuable product it will be a value added product.
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