ISOLATION OF MICROFIBERS IN THE PROCESSING OF POLYAMIDE FABRICS

IF 0.6 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Marzhan Nyssanbek, A. Mukhametov, A. Azimov
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引用次数: 0

Abstract

In recent years, the problem of the release of polymer microparticles (the so-called microplastics) from textile products has been extensively investigated. The main reason of the release of a large number of plastic microfibers is considered to be machine washing of synthetic clothing. However, approaches aimed at reducing the amounts of detached microfibers (MFs) differ significantly. This paper reviews the existing approaches, presents a method for processing polyamide fabrics with a chitosan solution, and describes the experiments that confirm the feasibility of the proposed method. The formation of a chitosan film on the surface of polyamide fibers was evidenced with the results of scanning electron microscopy. The authors have shown that fabric surface treatment with a 1 % chitosan solution reduces the amount of microfibers released during washing by  60 %. A fluorescent analysis demonstrated that mechanical processing of polyamide fabrics with a higher surface density is associated with a release of a smaller number of microfibers (358 ± 24) MF/g as compared to less dense fabrics (533 ± 16) MF/g. The results obtained in the present study can be used in the development of a standard method for quantifying the amount of synthetic microfibers shed from textile materials during their washing.
聚酰胺织物加工中微纤维的隔离
近年来,人们对纺织品中聚合物微粒(即所谓的微塑料)的释放问题进行了广泛的研究。大量塑料微纤维释放的主要原因被认为是人工合成衣物的机洗。然而,旨在减少脱落微纤维(MFs)数量的方法差异很大。本文综述了现有的方法,提出了一种用壳聚糖溶液加工聚酰胺织物的方法,并通过实验验证了该方法的可行性。扫描电镜结果证实了壳聚糖在聚酰胺纤维表面的形成。作者表明,用1%的壳聚糖溶液处理织物表面,洗涤过程中释放的微纤维量减少了60%。荧光分析表明,与密度较低的织物(533±16)MF/g相比,表面密度较高的聚酰胺织物的机械加工释放的微纤维数量较少(358±24)MF/g)。本研究的结果可用于开发一种标准方法,用于定量纺织材料在洗涤过程中脱落的合成微纤维的量。
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
Materiali in tehnologije
Materiali in tehnologije 工程技术-材料科学:综合
CiteScore
1.30
自引率
0.00%
发文量
73
审稿时长
4-8 weeks
期刊介绍: The journal MATERIALI IN TEHNOLOGIJE/MATERIALS AND TECHNOLOGY is a scientific journal, devoted to original papers and review scientific papers concerned with the areas of fundamental and applied science and technology. Topics of particular interest include metallic materials, inorganic materials, polymers, vacuum technique and lately nanomaterials.
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