Published 2000 | Version v1
Miscellaneous

The effects of pH and concentration on heavy metal speciation and mobility, and its relation to heavy metal hyperaccumulation and distribution in selected native Australian flora

  • 1. Monash University, Clayton, VIC (Australia)

Description

Full text: The purpose of this research is to establish a clearer understanding of the relations that exist between heavy metal activity, speciation, bioavailability and their uptake and spatial distribution into plants. A combination of experimental modeling and pot trials using toxic heavy metals (cadmium, lead, mercury, copper, chromium and zinc) will be carried out. In the experiments, selected native Australian flora (Eucalyptus, Acacia, Atriplex) adapted to adverse environmental conditions will be used. Varying external factors such as pH, and metal concentration altered the composition of heavy metal speciation in the soil solution. Mathematical and geochemical (PHREEQC) models were used to vary these factors and emulate the conditions under which experimentation will be taking place. These variations help determine the possible heavy metal speciation that would occur in both soil and hydroponic based experiments under given conditions. The rhizosphere, soil solution and the plant material will be analysed by Inductively Coupled Plasma Mass Spectroscopy (ICPMS). Proton Ion X-ray Emission (PIXE) and Secondary Ion Mass spectrometry will help ascertain the distribution, concentration of heavy metal taken up into plant tissues. Information derived from these data will be used to determine and understand how varying such environmental conditions and hence heavy metal speciation affect their bioavailability in the medium, and how their acceptance, accumulation and storage within the selected flora. Preliminary experimentation showed that, for lead and cadmium, the variation in soil solution pH affected the quantity of heavy metal accumulated into selected native Australian flora. ICP-MS analysis of plants subjected to a known soil solution spiked with 200 μmol of lead and cadmium showed that the quantities of lead and cadmium accumulated into plant sections (roots, stems and leaves) varied in the selected woody species. A. heteroclita, A. saligna, and A. burbanyana also showed no or little signs of phytotoxicity upon accumulating the toxic heavy metals into their tissues under both acidic and alkaline pH conditions. It is possible that these species have the potential to phytoextract toxic heavy metals in high quantities. Preliminary analysis using PIXE indicated that leaf samples of Eucalyptus camaldulensis, E. globulus and E. Iesouefii showed a different distribution pattern for lead accumulated in its tissues compared to other essential elements taken up by the plant along the length of the main and secondary veins

Additional details

Publishing Information

Imprint Place
Lucas Heights (Australia)
Imprint Title
Biological SIMS Workshop. Workshop Handbook
Imprint Pagination
16 p.
Journal Page Range
p. 13

Conference

Title
Biological SIMS Workshop
Dates
29 Nov 2000
Place
Lucas Heights, NSW (Australia)