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Schoolchildren discover hotspots of floating plastic litter in rivers using a large-scale collaborative approach

The Science of The Total Environment 2021 52 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Dennis Brennecke, Dennis Brennecke, Tim Kiessling, Dennis Brennecke, Tim Kiessling, Tim Kiessling, Tim Kiessling, Antje Wichels, Martín Thiel Dennis Brennecke, Tim Kiessling, Katrin Kruse, Katrin Kruse, Martín Thiel Tim Kiessling, Katrin Knickmeier, Katrin Knickmeier, Katrin Knickmeier, Katrin Knickmeier, Katrin Knickmeier, Martín Thiel Katrin Knickmeier, Martín Thiel Martín Thiel Tim Kiessling, Martín Thiel Martín Thiel Tim Kiessling, Katrin Knickmeier, Dennis Brennecke, Antje Wichels, Antje Wichels, Katrin Knickmeier, Tim Kiessling, Tim Kiessling, Tim Kiessling, Dennis Brennecke, Martín Thiel Martín Thiel Katrin Kruse, Katrin Kruse, Katrin Kruse, Katrin Kruse, Katrin Kruse, Katrin Kruse, Antje Wichels, Antje Wichels, Antje Wichels, Martín Thiel Katrin Knickmeier, Martín Thiel Martín Thiel Magdalena Gatta‐Rosemary, Magdalena Gatta‐Rosemary, Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Antje Wichels, Dennis Brennecke, Magdalena Gatta‐Rosemary, Magdalena Gatta‐Rosemary, Antje Wichels, Tim Kiessling, Martín Thiel Katrin Knickmeier, Martín Thiel Antje Wichels, Katrin Knickmeier, Alice Nauendorf, Alice Nauendorf, Alice Nauendorf, Alice Nauendorf, Antje Wichels, Antje Wichels, Katrin Knickmeier, Katrin Knickmeier, Katrin Knickmeier, Ilka Parchmann, Martín Thiel Katrin Knickmeier, Katrin Knickmeier, Dennis Brennecke, Laura Thiel, Martín Thiel Tim Kiessling, Martín Thiel Katrin Knickmeier, Laura Thiel, Laura Thiel, Katrin Knickmeier, Laura Thiel, Katrin Knickmeier, Martín Thiel Katrin Knickmeier, Antje Wichels, Antje Wichels, Ilka Parchmann, Martín Thiel Ilka Parchmann, Ilka Parchmann, Tim Kiessling, Martín Thiel Arne Körtzinger, Arne Körtzinger, Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel Martín Thiel

Summary

A large-scale citizen science project involving schoolchildren detected microplastic hotspots in rivers across multiple European countries, demonstrating that collaborative monitoring can generate spatially extensive data on riverine plastic pollution.

Study Type Environmental

Rivers are an important transport route of anthropogenic litter from inland sources toward the sea. A collaborative (i.e. citizen science) approach was used to evaluate the litter pollution of rivers in Germany: schoolchildren within the project "Plastic Pirates" investigated rivers across the entire country during the years 2016 and 2017 by surveying floating macrolitter at 282 sites and taking 164 meso-/microplastic samples (i.e. particles 24.99-5 mm, and 4.99-1 mm, respectively). Floating macrolitter was sighted at 54% of sampling sites and floating macrolitter quantities ranged from 0 to 8.25 items m<sup>-1</sup> h<sup>-1</sup> (average of 0.34 ± 0.89 litter items m<sup>-1</sup> h<sup>-1</sup>). Floating meso-/microplastics were present at 57% of the sampling sites, and floating meso-/microplastic quantities ranged from 0 to 220 particles h<sup>-1</sup> (average of 6.86 ± 24.11 items h<sup>-1</sup>). As only particles >1 mm were sampled and analyzed, the pollution of rivers in Germany by microplastics could be a much more prevalent problem, regardless of the size of the river. We identified six plastic pollution hotspots where 60% of all meso-/microplastics collected in the present study were found. These hotspots were located close to a plastic-producing industry site, a wastewater treatment plant, at and below weirs, or in residential areas. The composition of the particles at these hotspots indicates plastic producers and possibly the construction industry and wastewater treatment plants as point sources. An identification of litter hotspots would enable specific mitigation measures, adjusted to the respective source, and thereby could prevent the release of large quantities of small plastic particles in rivers. The adopted large-scale citizen science approach was especially suitable to detect pollution hotspots by sampling a variety of rivers, large and small, and enabled a national overview of litter pollution in German rivers.

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