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对聚酯纺织品在洗涤过程中释放出的碎片状纤维(微塑料)上的环锭纺、喷气纺和转杯纺纱线结构的研究。

Investigation of ring, airjet and rotor spun yarn structures on the fragmented fibers (microplastics) released from polyester textiles during laundering.

作者信息

Jabbar Abdul, Tausif Muhammad

机构信息

School of Design, University of Leeds, UK.

Department of Textile Engineering, National Textile University, Pakistan.

出版信息

Text Res J. 2023 Nov;93(21-22):5017-5028. doi: 10.1177/00405175231191785. Epub 2023 Aug 9.

Abstract

The release of fragmented fibers (FFs), including microplastics from textiles, during their service life is considered an established source of environmental pollution. The yarn structure is identified to affect the amount and length distribution profile of shed FFs from textiles. In the present work, the impact of yarn structures spun from 100% polyester staple fibers, using commercially relevant spun yarn technologies in the textile industry, on the release of FFs from textiles is studied. The bespoke woven fabric samples produced from three types of spun yarns, which include ring, airjet (air vortex) and rotor yarns, were subjected to an accelerated washing process, for up to five washes, to quantify shed FFs and their length distribution profile. The morphological shapes of FF ends associated with the nature of fiber damage were also investigated. The results demonstrated that airjet and rotor yarn structures had released 28% and 33% less mass of FFs, respectively, as compared to the ring yarn structure during the whole washing process. The length distribution profile identified that the ring yarn structure shed longer length FFs as compared to both airjet and rotor ones. The damaged ends highlight the importance of textile manufacturing processes on the generation of FFs. The results of this study give a better understanding of the yarn structural effect of commercially relevant technologies on shedding of FFs, which are released as a pollutant to the environment.

摘要

在其使用寿命期间,包括纺织品中的微塑料在内的破碎纤维(FFs)的释放被认为是环境污染的一个既定来源。已确定纱线结构会影响纺织品脱落FFs的数量和长度分布情况。在本研究中,使用纺织工业中与商业相关的纺纱技术,对由100%聚酯短纤维纺成的纱线结构对纺织品中FFs释放的影响进行了研究。由三种类型的纺纱线(包括环锭纱、喷气(气涡)纱和转杯纱)制成的定制机织织物样品,经过长达五次的加速洗涤过程,以量化脱落的FFs及其长度分布情况。还研究了与纤维损伤性质相关的FF末端的形态形状。结果表明,在整个洗涤过程中,喷气纱和转杯纱结构释放的FFs质量分别比环锭纱结构少28%和33%。长度分布情况表明,与喷气纱和转杯纱相比,环锭纱结构脱落的FFs长度更长。受损末端突出了纺织制造工艺对FFs产生的重要性。本研究结果有助于更好地理解与商业相关的技术对作为环境污染物释放的FFs脱落的纱线结构效应。

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