Macromol—A Journal of Macromolecular Research · 2023 · 35 citations · 89 references
EngineeringBioplasticMixed FibresSustainable PolymersChemical EngineeringPolymer RecyclingBioremediationTextile WasteWaste TextilePolymer ChemistryFossil PolymersMaterials SciencePlastic RecyclingTextile FibreDegradable PlasticEnvironmental EngineeringSustainable PolymerPolymer ScienceRecycling
The recovery and recycling of textile waste is becoming urgent since textiles are generating more and more waste. In one year, about 92 million tons of textile waste are produced and the fashion industry accounts for 58 million tons of plastic waste per year. Several different synthetic fibres are used in textiles, thanks to their excellent processability and mechanical properties, but on the other hand, the difficulties linked to their end of life and the release of microplastics from them during washing is currently a cause of great concern. In this context, policy actions have been aimed at promoting recycling of waste and replacing fossil-based fibres with biobased fibres. The current review, considering both scientific papers published on international journals and web sources, considers the sorting of textiles and the possible recycling of polyesters, polyamides and acrylics. Nevertheless, the contamination and presence of mixed fibres in fabrics is another issue to face for recycling. Methodologies to solve the issue linked to the presence of elastane, present in the stretch fabrics, as well as the possibility of recycling textiles in the non-woven and composite sector are investigated. Moreover, chemical recycling and enzymatic recycling of fossil polymers are also considered. Thanks to the comprehensive scheme of this review, it is possible to deduce that, while the use of biobased materials should rapidly increase in textile applications, the perspective of recycling materials obtained from waste textile into durable and/or high-performance products seems the most promising.
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A bacterium that degrades and assimilates poly(ethylene terephthalate)
Shosuke Yoshida, Kazumi Hiraga, Toshihiko Takehana et al. · Science · 2016 · 3K citations
An engineered PET depolymerase to break down and recycle plastic bottles
Vincent Tournier, Christopher M. Topham, A. Gilles et al. · Nature · 2020 · 1.9K citations · Full text
Polymer Upcycling, Chemical Engineering, Plastic Bottles +13