Magnetic investigation of heavy metals contamination in urban topsoils around the East Lake, Wuhan, China
Магнитное исследование загрязнения городских верхних почв тяжёлыми металлами в районе озера Дунху, Ухань, Китай
2007-09-01
SCID: 54.1/tgugh36w
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contamination source identificationheavy metal contaminationmagnetic measurementsmagnetic susceptibilityurban topsoils
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Abstract (AI)
Magnetic measurements and heavy metal analyses were performed on 133 samples from the urban soils around the East Lake in Wuhan, China. Samples were collected from four areas with different environmental settings: a heavy industrial area well known for thermal power generation and steel works; villages located in the downwind area of the industrial area; a main road with heavy traffic and roads around the East Lake. Results show that concentrations of magnetic particle and heavy metals in urban topsoils are significantly elevated due to the input of coarser-grained magnetite from industrial (e.g. power generation and steel production) and other anthropogenic activities (e.g. vehicle emissions). Concentration-related magnetic parameters, for example, magnetic susceptibility, saturation isothermal remanent magnetization and anhysteretic remanent magnetization, significantly correlate with the concentration of heavy metals. Moreover, in terms of grain sizes, the magnetic particles of different origins can be efficiently discriminated at the studied region. Therefore, magnetic measurements provide a basis for discrimination and identification of different contamination sources, and can be used as an economic alternative to chemical analysis when mapping heavy metal contamination in urban soil around the East Lake region, Wuhan, China.
Key Findings
1
Industrial activities, including thermal power generation and steel production, and vehicle emissions contribute coarser-grained magnetite to the urban soils.
2
Magnetic measurements offer an economical alternative to chemical analysis for mapping and identifying heavy-metal contamination in urban soils.
3
Magnetic particle grain sizes can efficiently discriminate contamination from different sources in the studied region.
4
Magnetic susceptibility, saturation isothermal remanent magnetization, and anhysteretic remanent magnetization significantly correlate with heavy-metal concentrations.
5
Urban topsoils around Wuhan’s East Lake contain significantly elevated magnetic particles and heavy metals from industrial and other anthropogenic inputs.
Research Object
Urban topsoils around East Lake in Wuhan, China, contaminated by industrial and traffic-related magnetic particles and heavy metals
Research Subject
The relationships between magnetic properties, heavy-metal concentrations, particle grain sizes, and contamination sources in the urban topsoils
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2007-09-01
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