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The role of Fe- and Mn-oxides during EDTA-enhanced phytoextraction of heavy metals

Author

Listed:
  • M. Komárek

    (Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Czech Republic)

  • P. Tlustoš

    (Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Czech Republic)

  • J. Száková

    (Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Czech Republic)

  • V. Chrastný

    (Faculty of Agriculture, University of South Bohemia, České Budějovice, Czech Republic)

  • J. Balík

    (Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Czech Republic)

Abstract

In several cases ethylenediaminetetraacetic acid (EDTA) proved to be an efficient mobilising amendment during chemically enhanced phytoextraction of heavy metals. The presence of Fe-(hydr)oxides and their dissolution after the addition of EDTA can limit the phytoextraction of the targeted heavy metals due to the high stability of the formed Fe(III)EDTA complexes. This study has focused on the influence of Fe- and Mn-oxides and hydroxides dissolution on heavy metal uptake by Zea mays in a two-year EDTA-enhanced phytoextraction process. Incubation experiments and speciation modelling proved the increased concentrations of Mn and Fe through the dissolution of Mn-and Fe-(hydr)oxides. Furthermore, increased Fe and Mn accumulation was observed in maize plants after the second year of the phytoextraction process. Therefore, the presence of Mn- and especially Fe-(hydr)oxides proved to be a limiting factor during EDTA-enhanced phytoextraction of heavy metals from contaminated soils.

Suggested Citation

  • M. Komárek & P. Tlustoš & J. Száková & V. Chrastný & J. Balík, 2007. "The role of Fe- and Mn-oxides during EDTA-enhanced phytoextraction of heavy metals," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 53(5), pages 216-224.
  • Handle: RePEc:caa:jnlpse:v:53:y:2007:i:5:id:2203-pse
    DOI: 10.17221/2203-PSE
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    References listed on IDEAS

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    1. K. Šichorová & P. Tlustoš & J. Száková & K. Kořínek & J. Balík, 2004. "Horizontal and vertical variability of heavy metals in the soil of a polluted area," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 50(12), pages 525-534.
    2. A. Vaněk & L. Borůvka & O. Drábek & M. Mihaljevič & M. Komárek, 2005. "Mobility of lead, zinc and cadmium in alluvial soils heavily polluted by smelting industry," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 51(7), pages 316-321.
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    1. So. Asadi Kapourchal & Sa. Asadi Kapourchal & E. Pazira & M. Homaee, 2009. "Assessing radish (Raphanus sativus L.) potential for phytoremediation of lead-polluted soils resulting from air pollution," Plant, Soil and Environment, Czech Academy of Agricultural Sciences, vol. 55(5), pages 202-206.

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