纺织废物管理的最新技术:综述

Textiles Pub Date : 2023-12-18 DOI:10.3390/textiles3040027
K. Tang
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引用次数: 0

摘要

在送往垃圾填埋场或焚化的城市固体废物中,纺织废物占了很大一部分。创新管理对于提高可持续性和循环性非常重要。本综述旨在介绍纺织废物收集、分类和回收利用方面的最新政策和先进技术。全球和地区层面的政策越来越多地涉及纺织业的可持续性和循环经济概念。这些政策对于推动当前纺织废物管理的变革和创新至关重要。有人提出利用物联网、大数据、区块链和智能合约来提高纺织废物收集过程的透明度、可追溯性和问责制。它们优化了收集路线以及利益相关者之间的交易和协议。利用近红外光谱、光学分拣和人工智能对纺织废物进行分拣,可根据成分、颜色和质量对其进行分类。纺织品的机械再循环使纤维再生,其用途与原织物相同或不同。纤维已被用于制造建筑和护坡材料。化学回收利用化学品对废弃纺织品进行解聚,生产出新纺织品或其他材料的单体,而生物回收则利用酶和微生物来代替化学品。热回收利用通过热解、气化和水热液化从纺织废料中回收能源和燃料。这些创新技术可能存在成本高和可扩展性差的缺点。本综述总结了纺织废物管理创新的优缺点,有助于决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
State of the Art in Textile Waste Management: A Review
Textile waste constitutes a significant fraction of municipal solid waste sent to landfill or incinerated. Its innovative management is important to enhance sustainability and circularity. This review aims to present the latest policies and the state-of-the-art technologies in the collection, sorting and recycling of textile waste. Policies at global and regional levels are increasingly made to address the sustainability of the textile industry and integrate the concept of circular economy. They are crucial to driving changes and innovations in current textile waste management. The Internet of Things, big data, blockchain and smart contracts have been proposed to improve transparency, traceability and accountability in the textile waste collection process. They optimize collection routes, and transactions and agreements among stakeholders. The sorting of textile waste using near-infrared spectroscopy, optical sorting and artificial intelligence enables its separation based on composition, color and quality. The mechanical recycling of textiles regenerates fibers with the same or different applications from those of the original fabrics. Fibers have been used for making building and slope protection materials. Chemical recycling depolymerizes waste textiles using chemicals to produce monomers for new textiles or other materials, while biological recycling uses enzymes and microorganisms for this purpose instead of chemicals. Thermal recycling recovers energy and fuels from textile waste through pyrolysis, gasification and hydrothermal liquefaction. These innovations may have the drawbacks of high cost and scalability. This review contributes to decision making by synthesizing the strengths and weaknesses of the innovations in textile waste management.
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