A sustainable recycling process and its life cycle assessment for valorising post-consumer textile materials for thermal insulation applications.

IF 3.7 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Satya Karmakar, Abhijit Majumdar, Bhupendra Singh Butola
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Abstract

The textile industry along with construction, electronics and plastic generate huge amounts of waste posing challenges to the adoption of the circular economy. This research presents a sustainable and low-cost recycling technology for conversion of post-consumer textile (denim) wastes to useful insulation materials. To accomplish the objective, nonwoven materials were produced using varying proportions of post-consumer recycled denim (r-denim) fibre and hollow polyester (PET) fibre using different punch densities in the needle punching process. Kowalski, Cornell and Vining mixture design, a special type of design of experiments, was adopted to develop the samples. Developed nonwoven materials were characterised for thermal resistance and tensile properties. The results show that nonwoven materials containing the minimum proportion (20%) of r-denim fibres exhibited the highest thermal resistance (0.131 W-1m2K). However, by adjusting the process parameter of the nonwovens, that is, the punch density, the same thermal resistance (0.131 W-1m2K) is also achieved even with 39% r-denim fibres. Additionally, the nonwovens produced from this blend proportion (r-denim:PET = 39:61) demonstrate a reasonable strength of 2.43 cN/tex. Environmental benefits of the developed r-denim/PET nonwovens have been evaluated by the life cycle assessment approach. Results show that the use of ~40% r-denim fibre has reduced the environmental burden significantly. Therefore, the nonwoven materials produced from post-consumer textile wastes hold tremendous potential as an alternative to synthetic fibres in thermal insulation applications. This recycling approach has immense potential to contribute to the efficient utilisation of post-consumer textile waste materials paving the way for environmental sustainability.

用于隔热应用的消费后纺织材料的可持续回收流程及其生命周期评估。
纺织业与建筑业、电子业和塑料业一样,都会产生大量废弃物,这给循环经济的采用带来了挑战。这项研究提出了一种将消费后纺织品(牛仔布)废料转化为有用绝缘材料的可持续、低成本回收技术。为实现这一目标,在针刺工艺中使用不同比例的消费后回收牛仔布(r-denim)纤维和中空聚酯(PET)纤维,生产出了无纺材料。采用 Kowalski、Cornell 和 Vining 混合物设计(一种特殊的实验设计)来开发样品。对开发的无纺材料进行了热阻和拉伸性能表征。结果表明,含有最低比例(20%)对二亚麻纤维的无纺材料具有最高的热阻(0.131 W-1m2K)。然而,通过调整无纺布的工艺参数,即冲孔密度,即使含有 39% 的亚麻纤维,也能获得相同的热阻(0.131 W-1m2K)。此外,用这种混纺比例(亚麻:PET = 39:61)生产的无纺布具有 2.43 cN/tex 的合理强度。我们采用生命周期评估方法对所开发的亚麻/PET 非织造布的环境效益进行了评估。结果表明,使用约 40% 的亚麻纤维大大减轻了环境负担。因此,利用消费后纺织废料生产的非织造材料具有巨大的潜力,可替代合成纤维用于隔热应用。这种回收方法潜力巨大,有助于有效利用消费后纺织废料,为环境的可持续发展铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Waste Management & Research
Waste Management & Research 环境科学-工程:环境
CiteScore
8.50
自引率
7.70%
发文量
232
审稿时长
4.1 months
期刊介绍: Waste Management & Research (WM&R) publishes peer-reviewed articles relating to both the theory and practice of waste management and research. Published on behalf of the International Solid Waste Association (ISWA) topics include: wastes (focus on solids), processes and technologies, management systems and tools, and policy and regulatory frameworks, sustainable waste management designs, operations, policies or practices.
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