Affiliation:
1. Department of Material Engineering, Faculty of Textile Engineering, Technical University of Liberec, 46117 Liberec, Czech Republic
Abstract
More than a third of microplastics in surface waters are formed by microplastics released from textile products containing textile fibers (fibrous microplastics). A large amount of fibrous microplastics enters the environment during textile production and the first few washing cycles. Mechanical, thermal, chemical, and biological damage to textiles causes the generation of fibrous microplastics. Textile manufacturers, dyers and finishers, garment producers, distributors, or consumers contribute to this process. During the construction of textiles, multiple issues need to be addressed simultaneously. They are related to the optimization of technological processes and the construction and functionalization of fiber structures, considering ecological requirements, including suppressing the formation of fibrous microplastics. This research is focused on the specification of reasons for the generation of fibrous microplastics during textile production. The influence of the structure of fibers, abrasive deformations, and surface structure of fabrics on the generation of fibrous microplastics is discussed. The release of fibrous microplastics during washing is mentioned as well.
Funder
Department of Material Engineering, Faculty of Textile Engineering, Technical University of Liberec, Czech Republic
Reference31 articles.
1. Yarn Hairiness;Barella;Text. Prog.,1983
2. Yarn Hairiness: A Further Update;Barella;Text. Prog.,2002
3. Environmental exposure to microplastics: An overview on possible human health effects;Prata;Sci. Total Environ.,2020
4. van Dijk, F., Song, S., van Eck, G.W., Wu, X., Bos, I.S., Boom, D.H., Kooter, I.M., Spierings, D.C., Wardenaar, R., and Cole, M. (2021). Inhalable textile microplastic fibers impair airway epithelial growth. Biorxiv.
5. PET microplastics toxicity on marine key species is influenced by pH, particle size and food variations;Piccardo;Sci. Total Environ.,2020