AI Article Synopsis

  • The study focused on a large construction waste dump in Beijing, assessing atmospheric dust samples for 14 metal elements using ICP-MS technology.
  • High concentrations of Ca, Fe, Al, and Mg were found, making up 98.81% of the total metals, while Cd and Zn emerged as key contaminants contributing to atmospheric pollution.
  • Cd was identified as the major ecological risk factor associated with heavy metals in the dust, significantly affecting the area's environmental health within a 250 m radius of the dump.

Article Abstract

In this study, a large construction waste dump in Beijing, China, was used as the study area. Nineteen effective atmospheric dust samples were collected. The mass fractions of 14 metal elements (Ca, Fe, Al, Mg, Mn, Zn, Cr, Cu, V, Pb, Ni, As, Co, and Cd) were determined for the samples using ICP-MS. The pollutants and the potential ecological risk levels of 10 different heavy metals were evaluated using the enrichment factor, geo-accumulation index, and a potential ecological risk assessment method. The results showed that the Ca, Fe, Al, and Mg contents in the dust fall were considerably high and accounted for 98.81% of the total mass of the analysed metals. Cd and Zn were the main metal contaminants in the dust fall in the vicinity of the construction waste dump, followed by Cu and Mn. The Cd, Zn, Cu, and Mn contents in the construction waste had a significant impact on atmospheric pollution within 250 m of the dump. Moreover, Cd had the largest contribution to the comprehensive ecological risk posed by the heavy metals in the dust fall and was determined to be the primary ecological risk factor in the atmospheric environment in the vicinity of the construction waste dump.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9602486PMC
http://dx.doi.org/10.3390/ijerph192013019DOI Listing

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