Publication Cover
Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 45, 2010 - Issue 5
240
Views
16
CrossRef citations to date
0
Altmetric
ARTICLES

Hydroponic estimation of heavy metal accumulation by different genotypes of Salix

, , &
Pages 569-578 | Received 28 Sep 2009, Published online: 08 Mar 2010

References

  • Eapen , S. , Singh , S. , Thorat , V. , Kaushik , C. P. , Raj , K. and D'Souza , S. F. 2006 . Phytoremediation of radiostrontium (90Sr) and radiocesium (137Cs) using giant milky weed (Calotropis gigantea R.Br.) plants . Chemosphere , 65 ( 11 ) : 2071 – 2073 .
  • Pulford , I. D. , Riddell-Black , D. and Stewart , C. 2002 . Heavy metal uptake by willow clones from sewage sludge-treated soil: the potential for phytoremediation . Int. J. Phytoremediat. , 4 ( 1 ) : 59 – 72 .
  • Quartacci , M. F. , Argilla , A. , Baker , A. J. M. and Navari-Izzo , F. 2006 . Phytoextraction of metals from a multiply contaminated soil by Indian mustard . Chemosphere , 63 ( 6 ) : 918 – 925 .
  • Dickinson , N. M. 2000 . Strategies for sustainable woodland on contaminated soils . Chemosphere , 41 ( 1 ) : 259 – 263 .
  • Evangelou , M. W. H. , Daghan , H. and Schaeffer , A. 2004 . The influence of humic acids on the phytoextraction of cadmium from soil . Chemosphere , 57 ( 3 ) : 207 – 213 .
  • Khan , A. G. , Kuek , C. , Chaudhry , T. M. , Khoo , C. S. and Hades , W. J. 2000 . Role of plants, mycorrhizae and phytochelators in heavy metal contaminated land remediation . Chemosphere , 41 ( 1 ) : 197 – 207 .
  • Krämer , U. 2005 . Phytoremediation: novel approaches to cleaning up polluted soils . Curr. Opin. Biotech. , 16 ( 2 ) : 133 – 141 .
  • Lebrun , M. 2001 . Phytoremediation of toxic metals using plants to clean up the environment . Plant Sci. , 160 ( 5 ) : 1073 – 1075 .
  • Mulligan , C. N. , Yong , R. N. and Gibbs , B. F. 2001 . Remediation technologies for metal contaminated soils and groundwater: an evaluation . Eng. Geol. , 60 ( 1 ) : 193 – 207 .
  • Qin , F. , Shan , X. and Wei , B. 2004 . Effects of low-molecular-weight organic acids and residence time on desorption of Cu, Cd, and Pb from soils . Chemosphere , 57 ( 4 ) : 253 – 263 .
  • Adriano , D. C. , Wenzel , W. W. , Vangronsveld , J. and Bolan , N. S. 2004 . Role of assisted natural remediation in environmental cleanup . Geoderma , 122 ( 2 ) : 121 – 142 .
  • Clemens , S. , Palmgren , M. G. and Krämer , U. 2002 . A long way ahead: Understanding and engineering plant metal accumulation . Trends Plant Sci. , 7 ( 7 ) : 309 – 315 .
  • Cunningham , S. C. , Berti , W. R. and Huang , J. W. 1995 . Phytoremediation of contaminated soils . Trends Biotech. , 13 ( 9 ) : 393 – 397 .
  • Kocik , A. , Truchan , M. and Rozen , A. 2007 . Application of willows (Salix viminalis) and earthworms (Eisenia fetida) in sewage sludge treatment . Eur. J Soil Biol. , 43 ( 1 ) : 327 – 331 .
  • Kuzovkina , Y. A. and Volk , T. A. 2009 . The characterization of willow (Salix L.) varieties for use in ecological engineering applications: Co-ordination of structure, function and autecology . Ecol. Eng. , 35 ( 8 ) : 1178 – 1189 .
  • Ouyang , Y. 2002 . Phytoremediation: modelling plant uptake and contaminant transport in the soil-plant-atmosphere continuum . J Hydrol. , 266 ( 1 ) : 66 – 82 .
  • Jensen , K. , Holm , P. E. , Nejrup , J. , Larsen , M. B. and Borggaard , O. K. 2009 . The potential of willow for remediation of heavy metal polluted calcareous urban soils . Environ. Pollut. , 157 ( 3 ) : 931 – 937 .
  • Maroder , H. L. , Prego , I. A. , Facciuto , G. R. and Maldonado , S. B. 2000 . Storage behaviour of Salix alba and Salix matsudana seeds . Ann. Bot. , 86 ( 5 ) : 1017 – 1021 .
  • Mleczek , M. , £ukaszewski , M. , Kaczmarek , Z. , Rissmann , I. and Golinski , P. 2009 . Efficiency of selected heavy metals accumulation by Salix viminalis roots . Environ. Exp. Bot. , 65 ( 1 ) : 48 – 53 .
  • Dimitriou , I. , Aronsson , P. and Weih , M. 2006 . Stress tolerance of five willow clones after irrigation with different amounts of landfill leachate . Bioresource Technol. , 97 ( 1 ) : 150 – 157 .
  • Elowson , S. 1999 . Willow as a vegetation filter for cleaning of polluted drainage water from agricultural land . Biomass Bioenerg. , 16 ( 4 ) : 281 – 290 .
  • Lewandowski , I. , Schmidt , U. , Londo , M. and Faaij , A. 2006 . The economic value of the phytoremediation function – Assessed by the example of cadmium remediation by willow (Salix ssp) . Agr. Syst. , 89 ( 1 ) : 68 – 89 .
  • Dos Santos Utmazian , M. N. , Wieshammer , G. , Vega , R. and Wenzel , W. W. 2007 . Hydroponic screening for metal resistance and accumulation of cadmium and zinc in twenty clones of willows and poplars . Environ. Pollut. , 148 ( 1 ) : 155 – 165 .
  • Vandecasteele , B. , Meers , E. , Vervaeke , P. , De Vos , B. , Quataert , P. and Tack , F. M. G. 2005 . Growth and trace metal accumulation of two Salix clones on sediment-derived soils with increasing contamination levels . Chemosphere , 58 ( 8 ) : 995 – 1002 .
  • Giachetti , G. and Sebastiani , L. 2006 . Metal accumulation in poplar plant grown with industrial wastes . Chemosphere , 64 ( 3 ) : 446 – 454 .
  • Unterbrunner , R. , Puschenreiter , M. , Sommer , P. , Wieshammer , G. , Tlustoš , P. , Zupan , M. and Wenzel , W. W. 2007 . Heavy metal accumulation in trees growing on contaminated sites in Central Europe . Environ. Pollut. , 148 ( 1 ) : 107 – 114 .
  • Mleczek , M. , Rissmann , I. , Rutkowski , P. , Kaczmarek , Z. and Golinski , P. 2009 . Accumulation of selected heavy metals by different genotypes of Salix . Environ. Exp. Bot. , 66 ( 1 ) : 289 – 296 .
  • Fargašová , A. 2001 . Winter third- to fourth-instar larvae of Chironomus plumosusas bioassay tools for assessment of acute toxicity of metals and their binary combinations . Ecotox. Environ. Safe , 48 ( 1 ) : 1 – 5 .
  • Morrison , D. F. , ed. 1976 . Multivariate Statistical Methods , 36 – 69 . Tokyo, , Japan : McGraw-Hill Kogakusha Ltd. .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.