HR: 1330h
AN: H43B-07 [Abstracts]
TI: Heavy Metal Displacement in Chelate-Assisted Phytoremediation of Biosolids Soil
AU: * Kirkham, M B
EM: mbk@ksu.edu
AF: Kansas State University, Department of Agronomy
2004 Throckmorton Hall, Manhattan, KS 66506 United States
AU: Liphadzi, M S
EM: Stanley@arc.agric.za
AF: Agricultural Research Council, 1134 Park Street
Hatfield, Pretoria, 0001 South Africa
AB:
Heavy metals in biosolids (sewage sludge) applied to land contaminate the soil. Phytoremediation, the use of plants to clean up toxic heavy metals, might remove them. Chelating agents are added to soil to solubilize the metals for enhanced
phytoextraction. Yet no studies follow the displacement and leaching of heavy metals in soil with biosolids following
solubilization with chelates. The objective of this work was to determine the mobility of heavy metals, as affected by a
chelate, in soil (Haynie very fine sandy loam) from a 25-year old sludge farm.
Soil columns (105 cm long; 39 cm in diameter) either had a plant (hybrid poplar; Populus deltoides Marsh. x P. nigra L.) or
no plant. When the poplars were 144 days old, the tetrasodium salt of the chelating agent EDTA (ethylenediamine-tetraacetic
acid) was irrigated onto the soil at a rate of 1 g per kg of soil. Drainage water, soil, and plants were analyzed for three
toxic heavy metals (Cd, Ni, Pb) and four essential heavy metals (Cu, Fe, Mn, Zn).
Without EDTA, concentrations of the seven heavy metals in the leachate from columns with or without plants were low or below
detection limits. With or without plants, the EDTA mobilized all heavy metals and increased their concentration in drainage
water. Without plants, the concentrations of Cd, Cu, Fe, Pb, and Zn in the leachate from columns with EDTA were above
drinking-water standards. (There is no drinking-water standard for Ni.) The presence of poplar plants in the soil reduced
the concentrations of Cu, Fe, and Zn in the leachate so it fell within drinking-water standards. Concentrations of Cd and Pb
in the leachate remained above drinking-water standards with or without plants. At harvest (124 days after the EDTA
application), total concentration of each heavy metal in the soil at different depths in the columns with EDTA was similar to that in the columns without EDTA. The chelate did not affect the concentration of heavy metals in the roots, stems, or
leaves. However, the wood, which contains the xylem, from plants grown with EDTA had a higher concentration of Ni and Pb than did wood from plants grown with no EDTA.
The results showed that heavy metals in soil with sludge treated with EDTA could contaminate ground water, even in the
presence of plant roots.
(This research is part of the dissertation of M.S. Liphadzi, who was supported by a Fulbright Fellowship.)
DE: 0400 Biogeosciences
DE: 1829 Groundwater hydrology
DE: 1831 Groundwater quality
DE: 1875 Unsaturated zone
DE: 1899 General or miscellaneous
SC: Hydrology [H]
MN: 2005 Joint Assembly