Measuring atmospheric microplastic composition and occurrence from an uncrewed aerial system

Airborne microplastic (MP) particles are transported through the atmosphere, yet direct measurements at altitude remain scarce. We developed a novel uncrewed aerial system (UAS)-based method for in situ MP sampling within and above the atmospheric boundary layer. In this proof-of-concept study, we deployed the UAS at 80–100 m above ground level (a.g.l.) in Colorado, USA, during fall 2024, collecting particles larger than 1 µm at two sites with high anthropogenic activity using an environmental cyclone sampler. Airborne particles were isolated, counted by optical microscopy, and identified by Raman microscopy with automated spectral analysis (OpenSpecy). Spectroscopically confirmed MPs were detected at 100 m a.g.l. and represented a mean of 13.8 ± 1.8% of the blank-corrected, morphologically selected airborne-particle counts for particles in the 3–10 µm size range. Hetero-aggregates dominated the samples, consistent with traffic-related material. This proof of concept demonstrates the feasibility of UAS-based atmospheric MP sampling and establishes a framework adaptable for ocean-surface, high-altitude, and remote environment monitoring.

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Publication Details

Journal
Scientific Reports
Published
2026-10-06
DOI
https://doi.org/10.1038/s41598-026-74287-9
Primary Topic
Microplastics and Plastic Pollution
Type
article
Field-Weighted Citation Impact
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article

Measuring atmospheric microplastic composition and occurrence from an uncrewed aerial system

Dale Lawrence, Gijs de Boer, Alessandra D’Angelo, Radiance Calmer et al.
Scientific Reports
Microplastics and Plastic Pollution
article

Measuring atmospheric microplastic composition and occurrence from an uncrewed aerial system

Dale Lawrence, Gijs de Boer, Alessandra D’Angelo, Radiance Calmer, Michael Rhodes
article en

Abstract

Airborne microplastic (MP) particles are transported through the atmosphere, yet direct measurements at altitude remain scarce. We developed a novel uncrewed aerial system (UAS)-based method for in situ MP sampling within and above the atmospheric boundary layer. In this proof-of-concept study, we deployed the UAS at 80–100 m above ground level (a.g.l.) in Colorado, USA, during fall 2024, collecting particles larger than 1 µm at two sites with high anthropogenic activity using an environmental cyclone sampler. Airborne particles were isolated, counted by optical microscopy, and identified by Raman microscopy with automated spectral analysis (OpenSpecy). Spectroscopically confirmed MPs were detected at 100 m a.g.l. and represented a mean of 13.8 ± 1.8% of the blank-corrected, morphologically selected airborne-particle counts for particles in the 3–10 µm size range. Hetero-aggregates dominated the samples, consistent with traffic-related material. This proof of concept demonstrates the feasibility of UAS-based atmospheric MP sampling and establishes a framework adaptable for ocean-surface, high-altitude, and remote environment monitoring.

Scientific Reports
Cooperative Institute for Research in Environmental Sciences (US), University of Rhode Island (US), University of Colorado Boulder (US), Brookhaven National Laboratory (US)
Openalex Percentile: Top 23%
Microplastics and Plastic Pollution
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Measuring atmospheric microplastic composition and occurrence from an uncrewed aerial system — Dale Lawrence, Gijs de Boer, et al. · Scientific Reports (2026) | TGRS Research Map | TGRS