纺织废料的化学增值:促进循环经济的可持续回收。

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
ACS Omega Pub Date : 2025-03-19 eCollection Date: 2025-04-01 DOI:10.1021/acsomega.4c10616
Joyjit Ghosh, Md Reazuddin Repon, Nishat Sarmin Rupanty, Tanvir Rahman Asif, Mohammed Islam Tamjid, Vladimir Reukov
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引用次数: 0

摘要

随着全球纺织品生产的持续增长,管理该行业产生的越来越多的废物正成为一个紧迫的环境问题。全球每年产生的纺织废物超过 9200 万吨,其中大部分被焚烧或填埋,造成温室气体排放、土壤和水污染以及生态系统破坏。本综述探讨了化学和生物技术方法(如酸水解法(可实现高达 70% 的葡萄糖回收)和酶回收法(与传统方法相比,可减少约 20% 的能源消耗))如何将纺织废物转化为宝贵资源,从而促进向循环经济转变,最大限度地减少对原始材料的依赖。然而,纺织废料的多样性--尤其是混合纤维和经过各种整理剂和添加剂处理的材料--增加了回收工艺的复杂性,通常需要采取特定的预处理步骤,以确保效率和经济可行性。先进的溶剂回收系统、优化的预处理技术和流化床热解(与固定床反应器相比,生物油产量最多可提高 25%)等可扩展的解决方案在使纺织品循环利用更具可持续性和工业适应性方面发挥着至关重要的作用。通过应对这些技术和财务挑战,该行业可以提高纺织品回收利用的效率和可持续性,减少废物并促进环境复原力。本综述还提出了若干未来发展方向,以提高可扩展性和与环境目标的兼容性,并强调了这些技术在创造有价值的二次材料和支持纺织品废物管理中的更环保实践方面的潜力。通过持续创新和对可持续发展实践的承诺,纺织业可以更好地平衡资源回收与经济可行性之间的关系,为减轻环境影响和支持更具资源效率和可持续发展的未来提供大量机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical Valorization of Textile Waste: Advancing Sustainable Recycling for a Circular Economy.

As textile production continues to grow worldwide, managing the mounting waste generated by this industry is becoming an urgent environmental concern. Globally, over 92 million tons of textile waste are produced annually, much of which is incinerated or disposed of in landfills, contributing to greenhouse gas emissions, soil and water contamination, and ecosystem harm. This review explores how chemical and biotechnological methods, such as acid hydrolysis (achieving up to 70% glucose recovery) and enzymatic recycling (reducing energy consumption by approximately 20% compared to conventional methods), can transform textile waste into valuable resources, fostering a shift toward a circular economy that minimizes reliance on virgin materials. However, the diverse nature of textile waste-particularly in mixed fibers and materials treated with various finishes and additives-adds complexity to recycling processes, often necessitating specific pretreatment steps to ensure both efficiency and economic viability. Scalable solutions such as advanced solvent recovery systems, optimized pretreatment techniques, and fluidized-bed pyrolysis (which can increase bio-oil yields by up to 25% compared to fixed-bed reactors) play crucial roles in making textile recycling more sustainable and adaptable at an industrial scale. By addressing these technical and financial challenges, the industry can improve the efficiency and sustainability of textile recycling practices, reducing waste and contributing to environmental resilience. This review also suggests several future directions to enhance scalability and compatibility with environmental goals, highlighting the potential for these technologies to create valuable secondary materials and support greener practices in textile waste management. Through continued innovation and a commitment to sustainable practices, the textile industry can better balance resource recovery with economic feasibility, unlocking substantial opportunities to mitigate environmental impact and support a more resource-efficient, sustainable future.

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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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