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Original Articles

Plant Uptake and the Leaching of Metals During the Hot Edds-Enhanced Phytoextraction Process

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Pages 181-196 | Published online: 07 Jun 2007

REFERENCES

  • Avery , B. W. and Bascomb , C. L. 1982 . Soil Survey Laboratory Methods , Hertfordshire, UK : Rothamsted Experimental Station . Harpenden, Soil Survey Technical Monograph No. 6. Harpenden
  • Bell , P. F. , Chaney , R. L. and Angle , J. S. 1991 . Free metal activity and total metal concentrations as indexes of micronutrient availability to barley (Hordeum vulgare cv ‘Klages’) . Plant Soil , 130 : 51 – 62 .
  • Bucheli-Witschel , M. and Egli , T. 2001 . Environmental fate and microbial degradation of aminopolycarboxylic acids . FEMS Microbiol. Rev. , 25 : 69 – 106 .
  • Chaney , R. L. , Brown , J. C. and Tiffin , L. O. 1972 . Obligatory reduction of ferric chelates in iron uptake by soybeans . Plant Physiol. , 50 : 208 – 213 .
  • Chen , Y. H. , Li , X. D. and Shen , Z. G. 2004a . Leaching and uptake of heavy metals by ten different species of plants during an EDTA-assisted phytoextraction process . Chemosph. , 57 : 187 – 196 .
  • Chen , Y. H. , Shen , Z. G. and Li , X. D. 2004b . The use of vetiver grass (Vetiveria zizanioides) in the phytoremediation of soils contaminated with heavy metals . Appl. Geochem , 19 : 1553 – 1565 .
  • Grčman , H. , Velikonja-Bolta , Š. , Vodnik , D. , Kos , B. and Leštan , D. 2001 . EDTA enhanced heavy metal phytoextraction: Metal accumulation, leaching and toxicity . Plant Soil , 235 : 105 – 114 .
  • Grčman , H. , Vodnik , D. , Velikonja-Bolta , Š. and Leštan , D. 2003 . Ethylenediaminedissuccinate as a new chelate for environmentally safe enhanced lead phytoextraction . J. Environ. Qual , 32 : 500 – 506 .
  • Hodson , M. E. , Valsami-Jones , E. , Cotter-Howells , J. D. , Dubbin , W. E. , Kemp , A. J. , Thornton , I. and Warren , A. 2001 . Effect of bone meal (calcium phosphate) amendments on metal release from contaminated soils—A leaching column study . Environ. Pollut. , 112 : 233 – 243 .
  • Huang , J. W. , Chen , J. J. , Berti , W. R. and Cunningham , S. D. 1997 . Phytoremediation of lead-contaminated soils: Role of synthetic chelates in lead phytoextraction . Environ. Sci. Technol. , 31 : 800 – 805 .
  • Jaworska , J. S. , Schowanek , D. and Feijtel , T. C. J. 1999 . Environmental risk assessment for trisodium [S,S]-ethylene diamine disuccinate, a biodegradable chelator used in detergent applications . Chemosph. , 38 : 3597 – 3625 .
  • Jones , P. W. and Williams , D. R. 2001 . Chemical speciation used to assess [S,S’]-ethylenediaminedissuccinic acid (EDDS) as a readily-biodegradable replacement for EDTA in radiochemical decontamination formulations . Appl. Radiat. Isot. , 54 : 587 – 593 .
  • Kari , F. G. , Hilger , S. and Canonica , S. 1995 . Determination of the reaction quantum yield for the photochemical degradation of Fe(III)-EDTA: Implication for the environmental fate of EDTA in surface waters . Environ. Sci. Technol. , 29 : 1008 – 1017 .
  • Kos , B. and Leštan , D. 2003a . Influence of a biodegradable ([S,S]-EDDS) and nondegradable (EDTA) chelate and hydrogen modified soil water sorption capacity on Pb phytoextraction and leaching . Plant Soil , 253 : 403 – 411 .
  • Kos , B. and Leštan , D. 2003b . Induced phytoextraction/soil washing of lead using biodegradable chelate and permeable barriers . Environ. Sci. Technol. , 37 : 624 – 629 .
  • Laurie , S. H. , Tancock , N. P. , McGrath , S. P. and Sanders , J. R. 1991 . Influence of complexation on the uptake by plants of iron, manganese, copper and zinc. I. Effect of EDTA in a multi-metal and computer-simulation study . J. Experi. Bot. , 42 : 509 – 513 .
  • Li , X. D. , Poon , C. S. and Liu , P. S. 2001 . Concentration and chemical partitioning of road dusts and urban soils in Hong Kong . Appl. Geochem. , 16 : 1361 – 1368 .
  • Luo , C. L. , Shen , Z. G. and Li , X. D. 2005 . Enhanced phytoextraction of Cu, Pb, Zn and Cd with EDTA and EDDS . Chemosph. , 59 : 1 – 11 .
  • Luo , C. L. , Shen , Z. G. , Li , X. D. and Baker , A. J.M. 2006b . Enhanced phytoextraction of Pb and other metals from artificially contaminated soils through the combined application of EDTA and EDDS . Chemosph. , 63 : 1773 – 1784 .
  • Luo , C. L. , Shen , Z. G. , Baker , A. J.M. and Li , X. D. 2006a . The role of root damage in the chelate-enhanced accumulation of lead by Indian mustard plants . Internat. J. Phytorem. , 8 : 323 – 337 .
  • Luo , C. L. , Shen , Z. G. , Lou , L. Q. and Li , X. D. 2006c . EDDS and EDTA-enhanced phytoextraction of metals from artificially contaminated soil and residual effects of chelant compounds . Environ. Pollut. , 144 : 862 – 871 .
  • Madrid , F. , Liphadzi , M. S. and Kirkham , M. B. 2003 . Heavy metal displacement in chelate-irrigated soil during phytoremediation . J. Hydrol. , 272 : 107 – 119 .
  • Marschner , H. , Romheld , V. and Kissel , M. 1986 . Different strategies in higher-plants in mobilization and uptake of iron . J. Plant Nutr. , 9 : 695 – 713 .
  • Meers , E. , Ruttens , A. , Hopgood , M. J. , Samson , D. and Tack , F. M. G. 2005 . Comparison of EDTA and EDDS as potential soil amendments for enhanced phytoextraction of heavy metals . Chemosph. , 58 : 1011 – 1022 .
  • Nowack , B. 2002 . Environmental chemistry of aminopolycarboxylate chelating agents . Environ. Sci. Technol. , 36 : 4009 – 4016 .
  • Papassiopi , N. , Tambouris , S. and Kontopoulos , A. 1999 . Removal of heavy metals from calcareous contaminated soils by EDTA leaching . Water Air Soil Pollut. , 109 : 1 – 15 .
  • Römkens , P. , Bouwman , L. , Japenga , J. and Draaisma , C. 2002 . Potentials of drawbacks of chelate-enhanced phytoremediation of soils . Environ. Pollut. , 116 : 109 – 121 .
  • Salt , D. E. , Prince , R.C. , Pickering , I. J. and Raskin , I. 1995 . Mechanisms of cadmium mobility and accumulation in Indian mustard . Plant Physiol. , 109 : 1427 – 1433 .
  • Shen , Z. G. , Li , X. D. , Wang , C. C. , Chen , H. M. and Chua , H. 2002 . Lead phytoextraction from contaminated soil with high-biomass plant species . J. Environ. Qual. , 31 : 1893 – 1900 .
  • Vandevivere , P. C. , Saveyn , H. , Verstraete , W. , Feijtel , T. C. J. and Schowanek , D. R. 2001 . Biodegradation of metal-[S,S]-EDDS complexes . Environ. Sci. Technol. , 35 : 1765 – 1770 .
  • Wallace , A. 1983 . A one-decade update on chelated metals for supplying micronutrients to crops . J. Plant Nutr. , 6 : 429 – 438 .
  • Witschel , M. and Egli , T. 1998 . Purification and characterization of a lyase from the EDTA-degrading bacterial strain DSM 9103 that catalyses the splitting of [S,S’]-ethylenediaminedissuccinate, a structural isomer of EDTA . Biodegradat. , 8 : 419 – 428 .
  • Wu , J. , Hsu , F. C. and Cunningham , S. D. 1999 . Chelate-assisted Pb phytoextraction: Pb availability, uptake and translocation constraints . Environ. Sci. Technol. , 33 : 1898 – 1904 .

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