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Doty S.L., Shang T.Q., Wilson A.M., Moore A.L., Newman L.A., Strand S.E., Gordon M.P. Metabolism of the soil and groundwater contaminants, ethylene dibromide and trichloroethylene, by the tropical leguminous tree, Leuceana leucocephala. Water Res. 37:2003;441-449
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Agostini E., Coniglio M.S., Milrad S.R., Tigier H.A., Giulietti A.M. Phytoremediation of 2, 4-dichlorophenol by Brassica napus hairy root cultures. Biotechnol Appl Biochem. 37:2003;139-144
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White J.C., Kottler B.D. Citrate-mediated increase in the uptake of weathered 2, 2-bis(p-chlorophenyl) 1, 1-dichloroethylene residues by plants. Environ Toxicol Chem. 21:2002;550-556
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In this and related papers, the authors begin to unravel relationships among root exudates and contaminant fate processes.
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The authors demonstrate what has been seen for many years in the study of metal uptake: that differences in varieties within the same species can be a large factor in plant uptake of organic compounds.
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14C techniques that show a clear phytoremediation effect.
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14C techniques that show a clear phytoremediation effect.
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Rentz A.J., Chapman B., Alvarez P.J.J., Schnoor J.L. Stimulation of hybrid poplar growth in petroleum contaminated soils through oxygen addition and soil nutrient amendments. Int J Phytoremed. 5:2003;57-72 The authors provide information that might lead to the coupling of several different approaches to field remediation.
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