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Relevance of tyre wear particles to the total content of microplastics transported by runoff in a high-imperviousness and intense vehicle traffic urban area

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Author(s):
Goehler, Luiza Ostini ; Moruzzi, Rodrigo Braga ; da Conceicao, Fabiano Tomazini ; Couto Junior, Antonio Aparecido ; Speranza, Lais Galileu ; Busquets, Rosa ; Campos, Luiza Cintra
Total Authors: 7
Document type: Journal article
Source: Environmental Pollution; v. 314, p. 11-pg., 2022-12-01.
Abstract

Microplastics (MPs) are an emerging pollutant and a worldwide issue. A wide variety of MPs and tyre wear particles (TWPs) are entering and spreading in the environment. TWPs can reach waterbodies through runoff, where main contributing particulate matter comes from impervious areas. In this paper, TWPs and other types of MPs that were transported with the runoff of a high populated-impervious urban area were characterised. Briefly, MPs were sampled from sediments in a stormwater detention reservoir (SDR) used for flood control of a catchment area of similar to 36 km(2), of which 73% was impervious. The sampled SDR is located in Sao Paulo, the most populated city in South America. TWPs were the most common type of MPs in this SDR, accounting for 53% of the total MPs; followed by fragments (30%), fibres (9%), films (4%) and pellets (4%). In particular, MPs in the size range 0.1 mm-0.5 mm were mostly TWPs. Such a profile of MPs in the SDR is unlike what is reported in environmental compartments elsewhere. TWPs were found at levels of 2160 units/(kg sediment. km 2 of impervious area) and 87.8 units/(kg sediment. km street length); MP and TWP loadings are introduced here for the first time. The annual flux of MPs and TWPs were 7.8 x 10(11 )and 4.1 x 10(11) units/(km(2).year), respectively, and TWP emissions varied from 43.3 to 205.5 kg/day. SDRs can be sites to intercept MP pollution in urban areas. This study suggests that future research on MP monitoring in urban areas and design should consider both imperviousness and street length as important factors to normalize TWP contribution to urban pollution. (AU)

FAPESP's process: 17/19195-7 - Numerical and morphological dynamics of fractal aggregates formed during flocculation and their effects on solid-liquid separation
Grantee:Rodrigo Braga Moruzzi
Support Opportunities: Scholarships abroad - Research