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Scientific journal publication

Nanoplastic detection and quantification in high-altitude glacial snow samples from Italy, Switzerland and France

Latz, Milena; Gill, Alasdair J.; Evangeliou, Nikolaos; Eckhardt, Sabine; Milner, Robin; Reemtsma, Thorsten; Materić, Dušan

Publication details

Journal: Scientific Reports, vol. 16, 24714, August 10th 2026

Doi: doi.org/10.1038/s41598-026-63263-y
Arkiv: hdl.handle.net/11250/5559131
Archive: nva.sikt.no/registration/01a023211f77-cc3d1140-5487-4fb0-9da6-0b6f112c00dd

Summary:
Plastic pollution is an ever-growing concern around the globe, with current research portraying the presence of contaminants even in previously pristine regions. Especially small particles, micro- and nanoplastics, can be dispersed over long stretches by atmospheric transport, reaching even the most remote areas of the planet. This study aims to portray current levels of nanoplastic contamination (< 1 μm) by analyzing snow samples from high-altitude glaciers in the European Alps (2300–3800 m) via TD-PTR-MS. We were able to detect six common plastic pollutants, with PE and PP contributing over 60% of the total mass concentration measured across all sites. On average, nanoplastic concentrations of 85 ng mL − 1 (range: 3.6 ± 12 ng mL − 1 – 470 ± 76 ng mL − 1 ) were detected at sampled glacier surfaces. Access to these remote regions was enabled through a citizen-science initiative, involving trained mountaineers for sample collection. The results were applied to atmospheric modelling, highlighting possible point sources of contamination. While agriculture and local plastic factories were revealed as potential sources of nanoplastics, spatial and temporal limitations complicated comparison inside the sample cluster.