Issue 30, 2024

Transforming textile waste into nanocellulose for a circular future

Abstract

The expansion of the textile industry and improvements in living standards have led to increased cotton textile production, resulting in a rise in textile waste, with cotton accounting for 24% of total textile waste. Effective waste management through recycling and reuse is crucial to reducing global waste production. Nanocellulose has diverse applications in environmental, geotechnical, food packaging, and biomedical engineering areas. As interest in nanocellulose's unique properties grows, cotton-based textile waste emerges as a promising source for nanocellulose development. However, there is a notable lack of comprehensive reviews on the extraction of nanocellulose from textile waste as a sustainable biomaterial. This paper aims to address this gap by exploring current extraction processes, properties, and recent applications of nanocellulose derived from textile waste. We discussed (1) the potential of nanocellulose resources from different textile wastes, (2) a comparison of the various extraction methods, (3) the functionalization technology and the potential application of such nanocellulose in the textile industry, and (4) the life cycle assessment (LCA) and potential gap of the current technology. It also emphasizes the potential reintegration of extracted nanocellulose into the textile industry to manufacture high-value products, thus completing the loop and strengthening the circular economy.

Graphical abstract: Transforming textile waste into nanocellulose for a circular future

Supplementary files

Article information

Article type
Review Article
Submitted
29 Apr 2024
Accepted
02 Jul 2024
First published
16 Jul 2024
This article is Open Access
Creative Commons BY-NC license

Nanoscale, 2024,16, 14168-14194

Transforming textile waste into nanocellulose for a circular future

T. Sathasivam, S. Sugiarto, M. P. Y. Yew, X. Y. Oh, S. Y. Chan, B. Q. Y. Chan, M. J. Tim and D. Kai, Nanoscale, 2024, 16, 14168 DOI: 10.1039/D4NR01839G

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