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. 2025 Mar 22;114(4):51.
doi: 10.1007/s00128-025-04021-0.

Atmospheric Microplastic Pollution in Textile Industrial Areas: Source, Composition, and Health Risk Assessment

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Atmospheric Microplastic Pollution in Textile Industrial Areas: Source, Composition, and Health Risk Assessment

Riajul Haq Tanjil et al. Bull Environ Contam Toxicol. .

Abstract

Microplastics (MPs) have been increasingly recognized as a pervasive environmental pollutant, with their presence extending to the atmosphere in urban, suburban, and even remote locations. Despite this, the precise sources of atmospheric microplastics remain elusive. Our study focuses on elucidating the contribution of textile industries to atmospheric microplastic pollution by investigating the atmospheric fallout within and around textile industrial areas. Samples of suspended MPs were collected over seven days from indoor and outdoor locations in six textile industries at Dhaka city, Bangladesh. Through examination using fluorescent microscopy and Fourier transform infrared (FTIR) spectroscopy, we identified transparent and black microplastics, predominantly synthetic textile fibres with lengths ranging from 20 to 180 μm. Chemical analysis revealed polymers such as polyester, nylon, regenerated cellulose, and natural fibres among the observed microplastics. Deposition rates inside the textile factory ranged from 109.0 × 103 to 245.3 × 103 MPs/m2/day, while those outside ranged from 19.3 × 103 to 72.7 × 103 MPs/m2/day, indicating a significant contribution of textile operations to atmospheric microplastic contamination. Furthermore, we calculated the exposure of textile workers to microplastics through inhalation and ingestion, with average rates of 8.7 ± 4.3 mg/kg-Bw/year and 97.9 ± 17.5 mg/kg-Bw/year, respectively. These findings emphasize the substantial health risks faced by textile workers due to microplastic exposure. In conclusion, our study provides compelling evidence implicating the textile factory as a noteworthy source of atmospheric microplastic pollution. It is crucial to address this issue in order to reduce environmental contamination and protect the health of those employed in textile production plants.

Keywords: Deposition Rate; Exposure; Microfibres; Microplastics; Textile Factory; Variation.

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Conflict of interest statement

Declarations. Conflict of interest: There are no conflicts of interest that we want to declare.

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References

    1. Ahmad M, Chen J, Khan MT, Yu Q, Phairuang W, Furuuchi M, Ali SW, Nawab A, Panyametheekul S (2023) Sources, analysis, and health implications of atmospheric microplastics. Emerg Contam 9:100233 - DOI
    1. Allen S et al (2019) Atmospheric transport and deposition of microplastics in a remote mountain catchment. Nat Geosci 12:339–344 - DOI
    1. Barnes DKA, Galgani F, Thompson RC, Barlaz M (2009) Accumulation and fragmentation of plastic debris in global environments. Philos Trans R Soc Lond B Biol Sci 364(1526):1985–1998 - DOI
    1. Beaurepaire M, Gasperi J, Tassin B, Dris R (2024) COVID lockdown significantly impacted microplastic bulk atmospheric deposition rates. Environ Pollut 344:123354 - DOI
    1. Besseling E, Wegner A, Foekema EM, van den Heuvel-Greve MJ, Koelmans AA (2013) Effects of microplastic on fitness and PCB bioaccumulation by the lugworm Arenicola marina. Environ Sci Technol 47:593–600 - DOI

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