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Elemental characterization of plants and soils in Panasqueira tungsten mining region

  • POTENTIALLY HARMFUL ELEMENTS IN SOIL-PLANT INTERACTIONS
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Abstract

Purpose

Mining activities represent a current source of pollution due to the large release of trace elements from mineral particles into the soil, atmosphere, and ecosystems. In active or abandoned metal-mining areas, direct discharge from mining deposits is one of the most common processes of contamination.

Materials and methods

In this work, we calculated the elemental concentrations of plants, edible for cattle, which might contain high values of toxic elements, such as As, Cu, Zn, and W, originated from mining exploitation, especially wolframite. Several species of plants originating from the same contaminated place, close to the mine, were the subject of our study in order to compare the uptake of harmful elements, from the contaminated soils, in the different plants. We have used the energy-dispersive X-ray fluorescence technique to perform the analysis and quantification of the elements present in the collected samples. The quantification was based on the fundamental parameters method for plants and on the WinAxil compare mode using a standard reference material, for soils. Calibration against a series of standard samples has been carried out.

Results and discussion

A comparison between contaminated and control samples, within the same species, was performed. The contamination of the two mining wash sites is assessed by comparing the elemental concentration of several plants in these places. Elemental content in soils was investigated, and a comparison between elemental levels in plants was performed.

Conclusions

High concentrations of tungsten were found near the new wash site. Arsenic was found throughout the area in concentrations many times higher than those recommended by the World Health Organization.

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References

  • Bi X, Feng X, Yang Y, Guangle Q, Li G, Li F, Liu T, Fu Z, Jin Z (2006) Environmental contamination of heavy metals from zinc smelting areas in Hezhang County, western Guizhou, China. Environ Int 32(7):883–890

    Article  CAS  Google Scholar 

  • Carvalho ML, Ferreira JG, Amorim P, Marques MIM, Ramos MT (1997) Study of heavy metals and other elements in macrophyte algae using energy-dispersive X-Ray Fluorescence. Environ Toxicol Chem 16:807–812

    Google Scholar 

  • Carvalho ML, Casaca C, Pinheiro T, Marques JP, Chevallier P, Cunha AS (2000) Analysis of human teeth and bones from the chalcolithic period by X-ray spectrometry. Nucl Inst Methods B 168:559–565

    Article  CAS  Google Scholar 

  • Carvalho ML, Santiago S, Nunes ML (2005) Assessment of the essential element and heavy metal content of edible fish muscle. Anal Bioanal Chem 382:426–432

    Article  CAS  Google Scholar 

  • Clemente R, Escolar A, Pilar Bernal M (2005) Heavy metals fractionation and organic matter mineralisation in contaminated calcareous soil amended with organic materials. Bioresour Technol 97(15):1894–1901

    Article  Google Scholar 

  • Ferreira RML, Canelas R, Conde D, Benoliel MJ, Coelho P, Gil L, Marin C, Quadrado F (2012) Modelação Matemática da Propagação de Material Sólido Resultante da Ruptura da Escombreira do Rio, Minas da Panasqueira. Proceedings of 11º Congresso da Água, Lisboa

  • Godinho B, Abreu MM, Magalhães MC (2010) Avaliação Biogeoquímica dos solos e do medronheiro na área mineira da Panasqueira. Rev Ciênc Agrár 33:226–235

    Google Scholar 

  • Gonzalez-Fernandez O, Queralt I, Carvalho ML, Garcia G (2007) Elemental analysis of mining wastes by energy dispersive X-ray fluorescence (EDXRF). Nucl Inst Methods B 262(1):81–86

    Article  CAS  Google Scholar 

  • Gonzalez-Fernandez O, Batista MJ, Abreu MM, Queralt I, Carvalho ML (2011) Elemental characterization of edible plants and soils in an abandoned mining region: assessment of environmental risk. X-Ray Spectrom 40:353–363

    Article  CAS  Google Scholar 

  • Guerra M, Manso M, Pessanha S, Longelin S, Carvalho ML (2013) Theoretical and experimental study on the angular dependence of scattering processes in X-ray fluorescence systems. X-Ray Spectrom 42(5):402–407

    Article  CAS  Google Scholar 

  • Marguí E, Queralt I, Carvalho ML, Hidalgo M (2007) Assessment of metal availability to vegetation (Betula pendula) in Pb-Zn ore concentrate residues with different features. Environ Pollut 145(1):179–184

    Article  Google Scholar 

  • Marques AF, Queralt I, Carvalho ML, Bordalo M (2003) Total reflection X-ray fluorescence and energy-dispersive X-ray fluorescence analysis of runoff water and vegetation from abandoned mining of Pb-Zn ores. Spectrochim Acta B 58(12):2191–2198

    Article  Google Scholar 

  • Reeves RD, Baker AJM (2000) Metal-accumulating plants. In: Raskin I, Ensley BD (eds) Phytoremediation of toxic metals—using plants to clean up the environment. Wiley, New York, p 193

    Google Scholar 

  • Robles-Arenas VM, Rodríguez R, García C, Manteca JI, Pascual L (2006) Sulphide-mining impacts in the physical environment: Sierra de Cartagena–La Unión (SE Spain) case study. Environ Geol 51(1):47–64

    Article  CAS  Google Scholar 

  • World Health Organization (1998) Quality control methods for medicinal plant materials. WHO Offset Publication, Geneva

    Google Scholar 

  • Yang Q, Shu W, Qiu J, Wang H, Lan C (2004) Lead in paddy soils and rice plants and its potential health risk around Lechang lead/zinc mine, Guangdong, China. Environ Int 30:883–889

    Article  CAS  Google Scholar 

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Acknowledgments

The authors acknowledge the help of Professor Teresa Calvão for identifying the collected plant species. This research was supported by Fundação para a Ciência e a Tecnologia (FCT) (Portugal), through the project no. PEstOE/FIS/UI0303/2011, financed by the European Community Fund FEDER through the COMPETE Competitiveness Factors Operational Programme.

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Correspondence to Mauro Guerra.

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Responsible editor: Charlotte Poschenrieder

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Pé-Leve Santos, S.C., Cruz, M.E., Barroso, A.M.E. et al. Elemental characterization of plants and soils in Panasqueira tungsten mining region. J Soils Sediments 14, 778–784 (2014). https://doi.org/10.1007/s11368-013-0788-x

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  • DOI: https://doi.org/10.1007/s11368-013-0788-x

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