Particle deposition in the human lung as a function of microplastics’ shape, size, orientation, and type
Ashish C. Jachak , Frank Pagone
Journal of Environmental Exposure Assessment ›› 2026, Vol. 5 ›› Issue (1) : 1
The widespread use and poor management of single-use plastics have created a global pollution issue with emerging human health concerns. Environmental degradation of plastics produces micro- and nanometer-sized particles that may become airborne and inhaled. While some are removed by lung defenses, others persist and trigger inflammation or toxic effects, including reproductive harm, carcinogenicity, and mutagenicity. Because airborne microplastics are often fibrous, this study focuses on how size, shape, and orientation influence their deposition. Deposition fractions of microplastic fibers in different regions of the human lung were estimated using the International Commission on Radiological Protection (ICRP) deposition model, with adjustments for fiber geometry, density, and orientation through aerodynamic and volume-equivalent diameters. Fiber lengths of
Aerosol / fiber / inhalation risk assessment / microplastics / polymers / shape factor
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