Lead Isotopes in Lichen Transplants around a Cu Smelter in Russia Determined by MC-ICP-MS Reveal Transient Records of Multiple Sources
Autor: | Barry J. Coles, V. Udachin, O. W. Purvis, Ben J. Williamson, Baruch Spiro, I. N. Mikhailova, Dominik J. Weiss |
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Rok vydání: | 2004 |
Předmět: |
Pollutant
Lichens Isotope Mineralogy General Chemistry Spatial distribution Russia Transplantation Isotopes Lead Abundance (ecology) Environmental chemistry Metallurgy Industry Environmental Chemistry Environmental science Environmental Pollutants Lichen Transect Copper Environmental Monitoring Isotope analysis |
Zdroj: | Environmental Science & Technology. 38:6522-6528 |
ISSN: | 1520-5851 0013-936X |
DOI: | 10.1021/es049277f |
Popis: | Transplants of the lichen Hypogymnia physodes, which is relatively tolerant to SO2 and heavy metals, were deployed for 3 months over a 60 km long SW-NE transect centered on a highly polluting Cu smelter and its adjoining town of Karabash, southern Urals, Russia. The abundance of 206Pb, 207Pb, 208Pb, and 204Pb were determined by MC-ICP-MS. The measurement of 204Pb revealed critical features, which would otherwise remain concealed: (i) The precise isotope ratios referenced to 204Pb allowed several different sources to be resolved even within the small area covered: (a) the obvious pollutant source of the Karabash Cu smelter; (b) two dispersed sources, likely to include soil with lower and different contributions of thorogenic and uranogenic lead; and (c) one anthropogenic source with higher contribution of 235U derived Pb. (ii) In part of the transect, the Pb isotope composition changed while the Pb concentrations remained the same. This indicates that the Pb content of the transplantation material from the background site was largely replaced and that the transplants provide a transient record reflecting a continuous accumulation and loss of environmental Pb, probably mainly in the form of extracellular particles. Overall, the method of lichen transplantation coupled with Pb isotope ratio determinations proved effective in assessing the usefulness of lichens in biomonitoring and in resolving different sources of atmospheric deposition. |
Databáze: | OpenAIRE |
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