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Shangrao City which is rich in mineral resources faces potential mercury (Hg) pollution in dust due to urban mining and industrial activities. To assess the potential health risks of Hg content, 35 foliar dust and 106 road dust samples were collected from 37 points in six urban functional areas. In order to analyze the Hg content and spatial distribution characteristics, the health risks were evaluated using US EPA guidelines. The results showed that the Hg content in foliar dust ranged from 67.9 to 2487.4 μg kg⁻ (mean: 475.1 ± 521.5 μg kg⁻), while the Hg content in road dust ranged from 24.2 to 191.5 μg kg⁻ (mean: 81.5 ± 70.7 μg kg⁻). The highest Hg content were in the high-tech industrial area, which were Jiangxi's soil Hg background by 15.3 times (foliar dust) and 2.4 times (road dust). The mean Hg content in foliar dust was ranked as high-tech industrial area > urban public green area > residential area > cultural and educational area > industrial park > commercial area. The mean Hg content in road dust was ranked as high-tech industrial area > urban public green area > cultural and educational area > commercial area > residential area > industrial park. Foliar dust Hg levels were significantly higher than road dust, with spatial distribution showing a decreasing trend from east to west. Chronic exposure to Hg was higher via hand-oral intake than respiratory inhalation, but non-carcinogenic risks were below 1, indicating no significant health hazards to residents.
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http://dx.doi.org/10.1007/s10653-025-02470-4 | DOI Listing |
J Hazard Mater
September 2025
Co-Innovation Center for Sustainable Forestry in Southern China, Key Laboratory of Soil and Water Conservation and Ecological Restoration of Jiangsu Province, College of Forestry & College of Soil and Water Conservation, Nanjing Forestry University, Nanjing, Jiangsu Province 210037, China.
Pollutants from industrial emissions and traffic accumulate in urban soils as road dust, carrying heavy metals (HMs) posing ecological and health risks. Magnetic susceptibility (MS), sensitive to ferromagnetic minerals, enables rapid HM contamination assessment. This study developed the Modified Dual-Threshold MS Evaluation Plot for Soil Contamination (M-Plot) using χ and χ% indices.
View Article and Find Full Text PDFArch Environ Contam Toxicol
September 2025
PolyAnalytik, Inc., London, ON, Canada.
Dust palliatives are used to reduce fugitive dust in areas susceptible to erosion by wind and rain. In 2015, the Bureau of Land Management (BLM) temporarily approved the use of polymer-based dust palliatives during the construction and operation of a solar energy facility and, in 2019, on a mining access road in Clark County, Nevada. The areas treated with palliative are habitat to the desert tortoise.
View Article and Find Full Text PDFSci Total Environ
September 2025
Department of Biology, Ecology and Earth Science, University of Calabria, 87036 Rende, Italy. Electronic address:
High-traffic areas generate road dusts (RD) including tyre road wear particles (TRWPs), a significant source of microplastics in the environment. These particles, which persist in sediments, soil, and vegetation, can adsorb pollutants such as heavy metals and hydrocarbons, facilitating their widespread dispersal. Despite concerns about their potential ecotoxicity, their effects on soil organisms remain underexplored.
View Article and Find Full Text PDFEnviron Sci Technol
September 2025
Department of Chemistry & Chemical Biology, McMaster University, Hamilton, Ontario L8S 4M1, Canada.
Road dust, which consists of brake and tire wear, pavement particles, crustal material, semivolatile vehicle exhaust components, and natural organic matter, can contribute to both airborne particulate matter and urban runoff. To date, research has mainly focused on the health impact of road dust, but little work has been conducted to characterize its role as a reactive surface in the environment. Our group has previously shown that illuminated road dust is a source of singlet oxygen, an important environmental oxidant.
View Article and Find Full Text PDFACS Omega
August 2025
School of Energy and Power Engineering, Northeast Electric Power University, No. 169, Changchun Road, Chuanying District, Jilin, Jilin 132012, China.
Traditional dust removal technologies have relatively low capture efficiencies for PM2.5 (particulate matter ≤2.5 μm) emitted by coal-fired power plants.
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