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- W4386400567 abstract "Water bodies are important carriers for lead (Pb) biogeochemical cycling, which is a key pathway of Pb transport. Although existing studies on Pb loading in inland waters have developed rapidly, a quantitative assessment of the distribution patterns and drivers of Pb concentration in inland waters at the global scale remains unclear. Here, by analyzing 1790 observations collected from 386 independent publications, we assessed the spatial distribution and drivers of Pb concentration in inland waters worldwide. We found that, (1) globally, the median of Pb concentration in inland waters was 5.81 μg L-1; (2) among different inland water types, Pb concentration was higher in rivers, and the highest Pb concentration was in industrial land in terms of land use type; (3) Pb concentration in inland waters were positively driven by potential evapotranspiration, elevation and road density; and (4) Pb concentration showed a negative relationship with absolute latitude, decreasing from tropic to boreal regions. Overall, our global assessment of the patterns and drivers of Pb concentration in inland waters contributed to a better understanding of the natural and anthropogenic attributions of Pb in the inland hydrological cycling. Water can rapidly explain the distribution of Pb in global patterns and its response to environmental variables, but its high spatiotemporal heterogeneity makes it difficult to accurately estimate global inland water Pb concentrations. Our study found clear global patterns and drivers of Pb concentration in global inland waters to better assess lead pollution." @default.
- W4386400567 created "2023-09-04" @default.
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- W4386400567 date "2023-10-01" @default.
- W4386400567 modified "2023-10-17" @default.
- W4386400567 title "Global patterns and drivers of lead concentration in inland waters" @default.
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- W4386400567 doi "https://doi.org/10.1016/j.jhazmat.2023.132455" @default.
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