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Phytoremediation trials on metal- and arsenic-contaminated pyrite wastes (Torviscosa, Italy).

Identifieur interne : 003527 ( Main/Exploration ); précédent : 003526; suivant : 003528

Phytoremediation trials on metal- and arsenic-contaminated pyrite wastes (Torviscosa, Italy).

Auteurs : Teofilo Vamerali [Italie] ; Marianna Bandiera ; Lucia Coletto ; Federica Zanetti ; Nicholas M. Dickinson ; Giuliano Mosca

Source :

RBID : pubmed:19073356

Descripteurs français

English descriptors

Abstract

At a site in Udine, Italy, a 0.7m layer of As, Co, Cu, Pb and Zn contaminated wastes derived from mineral roasting for sulphur extraction had been covered with an unpolluted 0.15m layer of gravelly soil. This study investigates whether woody biomass phytoremediation is a realistic management option. Comparing ploughing and subsoiling (0.35m depth), the growth of Populus and Salix and trace element uptake were investigated in both pot and field trials. Species differences were marginal and species selection was not critical. Impaired above-ground productivity and low translocation of trace elements showed that bioavailable contaminant stripping was not feasible. The most significant finding was of coarse and fine roots proliferation in surface layers that provided a significant sink for trace elements. We conclude that phytostabilisation and effective immobilisation of metals and As could be achieved at the site by soil amelioration combined with woody species establishment. Confidence to achieve a long-term and sustainable remediation requires a more complete quantification of root dynamics and a better understanding of rhizosphere processes.

DOI: 10.1016/j.envpol.2008.11.003
PubMed: 19073356


Affiliations:


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Le document en format XML

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<term>Ecology (methods)</term>
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<div type="abstract" xml:lang="en">At a site in Udine, Italy, a 0.7m layer of As, Co, Cu, Pb and Zn contaminated wastes derived from mineral roasting for sulphur extraction had been covered with an unpolluted 0.15m layer of gravelly soil. This study investigates whether woody biomass phytoremediation is a realistic management option. Comparing ploughing and subsoiling (0.35m depth), the growth of Populus and Salix and trace element uptake were investigated in both pot and field trials. Species differences were marginal and species selection was not critical. Impaired above-ground productivity and low translocation of trace elements showed that bioavailable contaminant stripping was not feasible. The most significant finding was of coarse and fine roots proliferation in surface layers that provided a significant sink for trace elements. We conclude that phytostabilisation and effective immobilisation of metals and As could be achieved at the site by soil amelioration combined with woody species establishment. Confidence to achieve a long-term and sustainable remediation requires a more complete quantification of root dynamics and a better understanding of rhizosphere processes.</div>
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