Title of article :
Scanning electron microscope and statistical analysis of suspended heavy metal particles in San Luis Potosi, Mexico
Author/Authors :
A. Arag?n Pi?a، نويسنده , , G. Torres Villase?or، نويسنده , , M. Monroy Fern?ndez، نويسنده , , A. Luszczewski Kudra، نويسنده , , R. Leyva Ramos، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Abstract :
Three hundred samples of urban aerosol were collected in high-volume samplers from five urban locations situated near an important metallurgical plant in the city of San Luis Potosi, Mexico. Whole samples were analyzed by atomic absorption (AA) for Pb, Cd, As, Cu, Ni, Fe and Cr. One hundred eighty of these samples were subjected to X-ray microanalysis (EDS) coupled with a scanning electron microscope to classify individual particles according to their chemical or mineralogical composition.
The principal component analysis (PCA) obtained from the bulk sample analysis, and X-ray microanalysis from individual particles, confirmed chemical associations among elements directly and indirectly. PCA from bulk assays made the most effective use of X-ray microanalysis to characterize major particle types. Some chemical associations would be difficult to detect using microanalysis, alone, for example, in anthropogenic complex phases. In this work, the combined use of microanalysis and statistical methods permitted identification of associations among elements. We observed an association of Pb–As–Cd and Fe–Mn among the samples. In a second order, Pb–Fe, Pb–Mn, Fe–As, Fe–Cd, Cd–Mn and As–Mn showed a lower association. Only Ni and Cu appeared unassociated with any other element analyzed by AA. We characterized the mineral phases by size range, morphology and chemical composition using SEM-EDS to obtain a compositional approach of anthropogenic phases and peculiar morphology and size. A high percentage of heavy metal particles smaller than 2 μm were detected.
Keywords :
atmospheric aerosol , Single-particle analysis , ELECTRON MICROPROBE , Principal component analysis , SIZE DISTRIBUTIONS , METALLURGY
Journal title :
Atmospheric Environment
Journal title :
Atmospheric Environment