Elemental Composition of PM2.5 and PM10 and Health Risks Assessment in the Industrial Districts of Chelyabinsk, South Ural Region, Russia
Элементный состав PM2.5 и PM10 и оценка рисков для здоровья в промышленных районах Челябинска, Южно-Уральский регион, Россия
2021-11-24
SCID: 54.1/5u3fjwrv
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ChelyabinskPM2.5 and PM10health risk assessmentinductively coupled plasma mass spectrometrytrace metal content
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Abstract (AI)
Air pollution impacts all populations globally, indiscriminately and has site-specific variation and characteristics. Airborne particulate matter (PM) levels were monitored in a typical industrial Russian city, Chelyabinsk in three destinations, one characterized by high traffic volumes and two by industrial zone emissions. The mass concentration and trace metal content of PM2.5 and PM10 were obtained from samples collected during four distinct seasons of 2020. The mean 24-h PM10 ranged between 6 and 64 μg/m3. 24-h PM2.5 levels were reported from 5 to 56 μg/m3. About half of the 24-h PM10 and most of the PM2.5 values in Chelyabinsk were higher than the WHO recommendations. The mean PM2.5/PM10 ratio was measured at 0.85, indicative of anthropogenic input. To evaluate the Al, Fe, As, Cd, Co, Cr, Cu, Mn, Ni, Pb, and Zn concentration in PM2.5 and PM10, inductively coupled plasma mass spectrometry (ICP-MS) was used. Fe (337–732 ng/m3) was the most abundant component in PM2.5 and PM10 samples while Zn (77–206 ng/m3), Mn (10–96 ng/m3), and Pb (11–41 ng/m3) had the highest concentrations among trace elements. Total non-carcinogenic risks for children were found higher than 1, indicating possible health hazards. This study also presents that the carcinogenic risk for As, Cr, Co, Cd, Ni, and Pb were observed higher than the acceptable limit (1 × 10−6).
Key Findings
1
Approximately half of 24-hour PM10 measurements and most PM2.5 measurements exceeded WHO recommendations.
2
Children’s total non-carcinogenic risk exceeded 1, and carcinogenic risks from As, Cr, Co, Cd, Ni, and Pb exceeded the acceptable limit of 1 × 10⁻⁶.
3
Iron was the most abundant measured element, while zinc, manganese, and lead were the most concentrated trace elements in PM2.5 and PM10.
4
PM10 concentrations ranged from 6–64 μg/m³ and PM2.5 from 5–56 μg/m³ across Chelyabinsk sampling sites and seasons in 2020.
5
The mean PM2.5/PM10 ratio was 0.85, indicating a substantial anthropogenic contribution to particulate pollution.
Research Object
PM2.5 and PM10 in the industrial districts of Chelyabinsk, including their elemental trace-metal content
Research Subject
Seasonal concentrations, elemental composition, and carcinogenic and non-carcinogenic health risks of particulate matter
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2021-11-24
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