Cadmium and Zinc uptake by volunteer willow species and elder rooting in polluted dredged sediment disposal sites

Salix species and Sambucus nigra L. (elder) naturally invade dredged sediment landfills and are commonly encountered on substrates contaminated with heavy metals. Foliar concentrations of Cd and Zn in four Salix species and elder were explored in the field. Metal contents in dredged sediment derived...

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Published inThe Science of the total environment Vol. 299; no. 1; pp. 191 - 205
Main Authors Vandecasteele, Bart, De Vos, Bruno, Tack, Filip M.G
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 01.11.2002
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Abstract Salix species and Sambucus nigra L. (elder) naturally invade dredged sediment landfills and are commonly encountered on substrates contaminated with heavy metals. Foliar concentrations of Cd and Zn in four Salix species and elder were explored in the field. Metal contents in dredged sediment derived soils were elevated compared to baseline concentration levels reported for Flanders. To evaluate foliar concentrations, reference data were compiled from observations in nurseries, young plantations and unpolluted sites with volunteer willow vegetation. Willows grown on polluted dredged sediment landfills showed elevated foliar Cd and Zn concentrations (>6.6 mg Cd/kg DW and >700 mg Zn/kg DW). This was not the case for elder. For willow, a significant relation was found between soil total Zn or Cd and foliar Zn or Cd, regardless of age, species, or clone. Willows proved to be useful bioindicators. Results indicated a possible threat in long-term habitat development of willow brushwood from transfer of Cd and Zn to the food web.
AbstractList At dredged sediment landfill sites in Belgium, cadmium and zinc uptake in volunteer willow and elder brushwood was investigated. In Salix samples, differences in foliar Cd and Zn concentrations were site-specific. Over the growing season, Zn concentrations in foliage increased strongly, while average Cd concentrations decreased and then increased at week 30. Linear regression between foliar and soil Zn concentrations was highly significant, while that between foliar and soil Cd was lower but still significant. In elder, Cd concentrations were below the detection limit, but the Zn concentrations were significantly higher in plants growing in polluted dredged sediment-derived soils.
Salix species and Sambucus nigra L. (elder) naturally invade dredged sediment landfills and are commonly encountered on substrates contaminated with heavy metals. Foliar concentrations of Cd and Zn in four Salix species and elder were explored in the field. Metal contents in dredged sediment derived soils were elevated compared to baseline concentration levels reported for Flanders. To evaluate foliar concentrations, reference data were compiled from observations in nurseries, young plantations and unpolluted sites with volunteer willow vegetation. Willows grown on polluted dredged sediment landfills showed elevated foliar Cd and Zn concentrations (>6.6 mg Cd/kg DW and >700 mg Zn/kg DW). This was not the case for elder. For willow, a significant relation was found between soil total Zn or Cd and foliar Zn or Cd, regardless of age, species, or clone. Willows proved to be useful bioindicators. Results indicated a possible threat in long-term habitat development of willow brushwood from transfer of Cd and Zn to the food web.
Salix species and Sambucus nigra L. (elder) naturally invade dredged sediment landfills and are commonly encountered on substrates contaminated with heavy metals. Foliar concentrations of Cd and Zn in four Salix species and elder were explored in the field. Metal contents in dredged sediment derived soils were elevated compared to baseline concentration levels reported for Flanders. To evaluate foliar concentrations, reference data were compiled from observations in nurseries, young plantations and unpolluted sites with volunteer willow vegetation. Willows grown on polluted dredged sediment landfills showed elevated foliar Cd and Zn concentrations (> 6.6 mg Cd/kg DW and > 700 mg Zn/kg DW). This was not the case for elder. For willow, a significant relation was found between soil total Zn or Cd and foliar Zn or Cd, regardless of age, species, or clone. Willows proved to be useful bioindicators. Results indicated a possible threat in long-term habitat development of willow brushwood from transfer of Cd and Zn to the food web.
Author De Vos, Bruno
Tack, Filip M.G
Vandecasteele, Bart
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Issue 1
Keywords Cadmium
Salix
Willow
Landfills
Heavy metals
Dredged sediments
Zinc
Language English
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Snippet Salix species and Sambucus nigra L. (elder) naturally invade dredged sediment landfills and are commonly encountered on substrates contaminated with heavy...
Salix species and Sambucus nigra L. (elder) naturally invade dredged sediment landfills and are commonly encountered on substrates contaminated with heavy...
At dredged sediment landfill sites in Belgium, cadmium and zinc uptake in volunteer willow and elder brushwood was investigated. In Salix samples, differences...
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StartPage 191
SubjectTerms bioindicators
Cadmium
Cadmium - pharmacokinetics
Conservation of Natural Resources
Dredged sediments
Environmental Monitoring
Geologic Sediments - chemistry
Heavy metals
Landfills
Plant Leaves - chemistry
Plant Roots - chemistry
Plant Roots - physiology
Refuse Disposal
Salix
Salix - chemistry
Sambucus - chemistry
Sambucus nigra
Soil Pollutants - pharmacokinetics
Willow
Zinc
Zinc - pharmacokinetics
Title Cadmium and Zinc uptake by volunteer willow species and elder rooting in polluted dredged sediment disposal sites
URI https://dx.doi.org/10.1016/S0048-9697(02)00275-9
https://www.ncbi.nlm.nih.gov/pubmed/12462585
https://search.proquest.com/docview/14643185
https://search.proquest.com/docview/16142844
Volume 299
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