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December 4, 2025Journal of Hazardous Materials1 citationsOpen Access

Modelling microplastic fibre emissions from synthetic textiles: An Australian case

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MBMithun Kumar BiswasHZHaiwei ZhouLPLiuhua Peng

Key Points

  • Emissions from synthetic textiles pose significant environmental and health risks, calling for urgent action.
  • The model projected 30.9 kilotonnes of microplastic fibre emissions released in Australia from 1988 to 2023.
  • Detailed emission inventories facilitate robust exposure and risk assessments, leveraging emission factors.
  • Integrated strategies could reduce future microplastic pollution from textiles by up to 65% by 2050.

Abstract

Microplastic fibre (MPF) pollution from synthetic textiles is a growing global concern with potentially irreversible impacts on human health and ecosystems. Yet, there is still a limited understanding of the full scale of emissions, hotspots, and receiving environmental compartments, creating a major barrier to effectively evaluating and mitigating exposure and health risk impacts. This study develops a comprehensive, dynamic model that quantifies MPF emissions from diverse emissions pathways across the entire life cycle of synthetic textiles, leveraging granular product-level activity data and corresponding emission factors. Applied to Australia as a case study, the model estimates that 30.9 ± 0.56 kilotonnes (kt) of MPFs were released cumulatively between 1988 and 2023, nearly half of which were airborne from household drying and wearing. In 2023, bedlinen, carpets, suits, and cleaning cloths together accounted for 66 % of airborne and 58 % of waterborne emissions. Without intervention, MPF emissions are projected to increase by 43 % by 2050, whereas an integrated strategy combining behavioural, technological, and infrastructural measures could reduce emissions by up to 65 %. The model is adaptable to textile systems in different regions, serving as a robust decision-supporting tool to tackle synthetic textile-derived microplastic pollution globally. The detailed MPF emission inventory generated by the model also provides a critical foundation for subsequent exposure and risk assessments.

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Cite This Study

Biswas et al. (2025) studied this question.

synapsesocial.com/papers/694023cd2d562116f28fce6dhttps://doi.org/10.1016/j.jhazmat.2025.140713
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