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Release of Microplastic Fibers from Polyester Knit Fleece during Abrasion, Washing, and Drying
Jana Novotna1, Maros Tunak2, Jiri Militky1
1Department of Material Engineering, Technical University of Liberec, Studentska 1402/2, Liberec 1 461 17, Czech Republic.
Abstract:
Today, microplastics are found in soil, air, and all water sources, including rivers, groundwater, and treated drinking water, with the majority originating from wastewater produced during the washing process. The aim of this study is to determine how standard washing, drying, and wearing simulated by mechanical abrasion of 100% polyester multifilament fleece knitted fabrics contribute to the release and formation of microplastics and fibrous fragments by determining changes in their total weight, thickness, dimensions, and relative surface area. In addition, a new textile surface evaluation methodology was developed to assess the cover area (cover ratio) of released microplastic fibers trapped on the treated fabric surface. The standard and new methods confirmed that the amount of microplastic fibers released from the fleece fabric increased continuously until the third to fifth washing cycle, after which the released amount was nearly constant. Furthermore, a large proportion of the released microplastic fibers was shown to have originated as residue from the manufacturing process. We recommend that (i) washing machines should include a 25 × 30 μm mesh fabric filter to reduce the number of microplastic fibers released down the drain, (ii) flat textiles should be prewashed in the factory, thereby effectively capturing the more significant part of fibers released during the first washing cycle, (iii) the construction and properties of fleece fabrics should be improved to meet environmental requirements, and (iv) the newly developed method for analyzing the cover area of loose fibers on fabric surfaces can be more widely used for quality control.
Insights
Washing polyester fleece releases microplastics, with amounts stabilizing after 3-5 cycles. Many fibers originate from manufacturing residue, highlighting the need for filters and pre-washing.
Area of Science:
- Environmental Science
- Materials Science
- Textile Engineering
Background:
- Microplastics contaminate ecosystems, with wastewater from textile washing being a major source.
- Polyester multifilament fleece fabrics are common and their contribution to microplastic pollution requires investigation.
Purpose of the Study:
- To quantify microplastic and fiber release from polyester fleece during simulated washing, drying, and wearing.
- To develop and apply a novel method for evaluating microplastic fiber coverage on fabric surfaces.
Main Methods:
- Mechanical abrasion simulating wear and tear on 100% polyester multifilament fleece.
- Measurement of fabric weight, thickness, dimensions, and surface area changes.
- Development of a textile surface evaluation methodology to assess microplastic fiber cover ratio.
Main Results:
- Microplastic fiber release increased with washing cycles, plateauing around the third to fifth wash.
- A significant portion of released fibers were manufacturing residues.
- The new methodology effectively assessed the cover area of trapped microplastic fibers.
Conclusions:
- Washing polyester fleece fabrics releases microplastics, with release rates stabilizing after initial cycles.
- Manufacturing processes contribute significantly to microplastic fiber release.
- Recommendations include implementing washing machine filters, factory pre-washing, and improved fabric design.
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