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What is hiding below the surface – MPs including TWP in an urban lake

Environment International 2023 24 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.
Fan Liu, Fan Liu, Jes Vollertsen Jeanette Lykkemark, Jeanette Lykkemark, Jeanette Lykkemark, Jeanette Lykkemark, Lucian Iordachescu, Lucian Iordachescu, Jeanette Lykkemark, Jeanette Lykkemark, Lucian Iordachescu, Lucian Iordachescu, Marziye Molazadeh, Marziye Molazadeh, Marziye Molazadeh, Marziye Molazadeh, Fan Liu, Fan Liu, Fan Liu, Fan Liu, Fan Liu, Fan Liu, Lucian Iordachescu, Fan Liu, Fan Liu, Asbjørn Haaning Nielsen, Fan Liu, Fan Liu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Jeanette Lykkemark, Jeanette Lykkemark, Jeanette Lykkemark, Jeanette Lykkemark, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Lucian Iordachescu, Jeanette Lykkemark, Lucian Iordachescu, Jeanette Lykkemark, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Fan Liu, Fan Liu, Fan Liu, Fan Liu, Asbjørn Haaning Nielsen, Jes Vollertsen Asbjørn Haaning Nielsen, Asbjørn Haaning Nielsen, Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Fan Liu, Jeanette Lykkemark, Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Lucian Iordachescu, Lucian Iordachescu, Jes Vollertsen Lucian Iordachescu, Asbjørn Haaning Nielsen, Jes Vollertsen Lucian Iordachescu, Jeanette Lykkemark, Jeanette Lykkemark, Fan Liu, Asbjørn Haaning Nielsen, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jeanette Lykkemark, Jeanette Lykkemark, Jes Vollertsen Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jeanette Lykkemark, Jes Vollertsen Jeanette Lykkemark, Asbjørn Haaning Nielsen, Lucian Iordachescu, Fan Liu, Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Fan Liu, Fan Liu, Fan Liu, Fan Liu, Fan Liu, Jes Vollertsen Lucian Iordachescu, Lucian Iordachescu, Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Jeanette Lykkemark, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Fan Liu, Asbjørn Haaning Nielsen, Jes Vollertsen Asbjørn Haaning Nielsen, Lucian Iordachescu, Jes Vollertsen Lucian Iordachescu, Lucian Iordachescu, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Jes Vollertsen Fan Liu, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Marziye Molazadeh, Jes Vollertsen Marziye Molazadeh, Jes Vollertsen Marziye Molazadeh, Jeanette Lykkemark, Jes Vollertsen Jeanette Lykkemark, Jes Vollertsen Fan Liu, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Asbjørn Haaning Nielsen, Jeanette Lykkemark, Jes Vollertsen Jes Vollertsen Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Asbjørn Haaning Nielsen, Jes Vollertsen Jes Vollertsen Jeanette Lykkemark, Jeanette Lykkemark, Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen Jes Vollertsen

Summary

Thirteen sediment samples from a Danish urban lake were analyzed for microplastics including tire wear particles, with detections down to 10 micrometers, finding that MPs including TWP accumulate in urban lake sediments even far from direct stormwater inputs.

Polymers
Study Type Environmental

Inland lakes play an important role as habitats for local species and are often essential drinking water reservoirs. However, there is limited information about the presence of microplastics (MPs) in these water bodies. Thirteen sediment samples were collected across a Danish urban lake to map MPs, including tyre wear particles (TWP). The lower size detection limit was 10 µm. MPs were quantified as counts, size, and polymer type by Fourier-transform infrared microspectroscopy (µFTIR) and mass estimated from the 2D projections of the MPs. As TWP cannot be determined by µFTIR, counts and sizes could not be quantified by this technique. Instead, TWP mass was determined by pyrolysis gas chromatography mass spectrometry (Py-GC/MS). The average MP abundance was 279 mg kg<sup>-1</sup> (µFTIR), of which 19 mg kg<sup>-1</sup> (Py-GC/MS) were TWP. For MPs other than tyre wear, the average MP count concentration was 11,312 counts kg<sup>-1</sup>. Urban runoff from combined sewer overflows and separate stormwater outlets combined with outflow from a wastewater treatment plant were potential point sources. The spatial variation was substantial, with concentrations varying several orders of magnitude. There was no pattern in concentration across the lake, and the distribution of high and low values seemed random. This indicates that large sampling campaigns encompassing the entire lake are key to an accurate quantification. No preferential spatial trend in polymer characteristics was identified. For MPs other than TWP, the size of buoyant and non-buoyant polymers showed no significant difference across the lake, suggesting that the same processes brought them to the sediment, regardless of their density. Moreover, MP abundance was not correlated to sediment properties, further indicating a random occurrence of MPs in the lake sediments. These findings shed light on the occurrence and distribution of MPs, including TWP, in an inland lake, improving the basis for making mitigation decisions.

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