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化学品和加工处理对聚酯纺织品热机械回收利用的影响

Impact of Chemicals and Processing Treatments on Thermo-Mechanical Recycling of Polyester Textiles.

作者信息

Standring Zara, Macintyre Lisa, Jiang Gigi, Bucknall David, Arrighi Valeria

机构信息

Institute of Chemical Sciences, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, UK.

School of Textiles and Design, Heriot-Watt University, Galashiels TD1 3HF, UK.

出版信息

Molecules. 2025 Jun 26;30(13):2758. doi: 10.3390/molecules30132758.

Abstract

The textile industry is among the world's largest, producing an estimated 124 million tonnes of fibres in 2023, with more than half of these being made from virgin polyester. Less than 0.1% of polyester fibres are recycled into new textiles at the end of their lives. Mechanical, thermo-mechanical, and chemical textile-to-textile polyester recycling are all technically possible, but thermo-mechanical recycling is reported to provide the most promising compromise between cost and quality. Myriad chemicals are used in polyester production, and this paper is the first to review the related academic literature to better understand their impact on recyclability. It has been demonstrated that chemicals used during the production and processing of polyester textiles can either provide resistance to, or catalyse, the degradation of polyester during thermo-mechanical recycling processes. However, the effect of combinations of these chemicals on recycling is largely unknown. Limiting, standardising, and transparently reporting the chemicals used during textile production would simplify research and could lead to better quality products after recycling.

摘要

纺织业是世界上最大的产业之一,2023年估计生产1.24亿吨纤维,其中一半以上由原生聚酯制成。聚酯纤维在使用寿命结束时,只有不到0.1%被回收再制成新的纺织品。机械、热机械和化学的纺织品到纺织品的聚酯回收在技术上都是可行的,但据报道,热机械回收在成本和质量之间提供了最有前景的折衷方案。聚酯生产中使用了无数种化学品,本文首次对相关学术文献进行综述,以更好地了解它们对可回收性的影响。已经证明,聚酯纺织品生产和加工过程中使用的化学品在热机械回收过程中,既可以抵抗聚酯的降解,也可以催化聚酯的降解。然而,这些化学品的组合对回收的影响在很大程度上是未知的。限制、规范和透明报告纺织品生产过程中使用的化学品将简化研究,并可能在回收后带来质量更好的产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/921b/12250887/a241752ad3ba/molecules-30-02758-g007.jpg

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