221
Views
18
CrossRef citations to date
0
Altmetric
Original Articles

Pot Experiment to Study the Uptake of Cd and Pb by Three Indian Mustards (Brassica Juncea) Grown in Artificially Contaminated Soils

, &
Pages 91-105 | Published online: 03 Apr 2008

REFERENCES

  • Baker , A. J.M. , McGrath , S.P. , Reeves , R.D. and Smith , J. A.C. 2000 . “ Metal hyperaccumulator plants: A review of the ecology and physiology of a biological resource for phytoremediation of metal-polluted soils ” . In Phytoremediation of Contaminated Soil & Water , Edited by: Terry , N. and Bañuelos , G. 85 – 107 . Boca Raton, FL : CRC .
  • Chaney , R. L. , Malik , M. , Li , Y. M. , Brown , S. L. , Brewer , E. P. , Angle , J. S. and Baker , A. J.M. 1997 . Phytoremediation of soil metals . Environ. Biotechnol. , 8 : 279 – 284 .
  • Chen , Z. S. and Lee , D. Y. 1997 . “ Evaluation of remediation techniques on two cadmium-polluted soils in Taiwan ” . In Remediation of Soils Contaminated with Metals , Edited by: Iskandar , I. K. and Adriano , D C. 209 – 223 . Northwood, , UK : Science Reviews .
  • Dushenkov , V. , Kumar , P. B.A.N. , Motto , H. and Raskin , I. 1995 . Rhizofiltration: The use of plants to remove heavy metals from aqueous streams . Environ. Sci. Technol. , 29 : 1239 – 1245 .
  • Ebbs , S. D. , Lasat , M. M. , Brady , D. J. , Cornish , J. , Gordon , R. and Kochian , L. V. 1997 . Phytoextraction of cadmium and zinc from a contaminated soil . J. Environ. Qual. , 26 : 1424 – 1430 .
  • EPA/ROC . 2002 . Taipei, , Taiwan : Environmental Protection Administration of Taiwan ROC . Method code No: NIEA S321.62C;
  • Gee , G. W. and Bauder , J. W. 1986 . “ Particle-size analysis ” . In Methods of soil analysis, Part 1, Physical and Mineralogical Method , 2nd , Edited by: Klute , A. 383 – 412 . Madison, WI : Agronomy Monograph 9 .
  • Guo , Y. and Marschner , H. 1995 . Uptake, distribution, and binding of cadmium and nickel in different plant species . J. Plant Nutr. , 18 : 2691 – 2706 .
  • Harmon , M. E. and Lajtha , K. 1999 . “ Analysis of detritus and organic horizons for mineral and organic constitutes ” . In Standard Soil Methods for Long-Term Ecological Research , Edited by: Robertson , G. P. , Coleman , D. C. , Bledsoe , C. S. and Sollins , P. 143 – 165 . New York : Oxford University Press .
  • Huang , J. W. , Chen , 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 .
  • Irtelli , B. and Navari-Izzo , F. 2006 . Influence of sodium nitrilotriacetate (NTA) and citric acid on phenolic and organic acids in Brassica juncea grown in excess of cadmium . Chemosphere , 65 : 1348 – 1354 .
  • Jiang , X. J. , Luo , Y. M. , Zhao , Q. G. , Baker , A J.M. , Christie , P. and Wong , M. H. 2003 . Soil Cd availability to Indian mustard and environmental risk following EDTA addition to Cd-contaminated soil . Chemosphere , 50 : 813 – 818 .
  • Kabata-Pendias , A. and Pendias , H. 2001 . “ Trace elements in plants ” . In Trace Element in Soils and Plants , 3rd , Edited by: Kabata-Pendias , A. and Pendias , H. 73 – 98 . Boca Raton, FL : CRC .
  • Kumar , P. B.A.N. , Dushenkov , V. , Motto , H. and Raskin , I. 1995 . Phytoextraction: The use of plants to remove heavy metals from soils . Environ. Sci. Technol. , 29 : 1232 – 1238 .
  • Lai , H. Y. and Chen , Z. S. 2004 . Effects of EDTA on solubility of cadmium, zinc, and lead and their uptake by rainbow pink and vetiver grass . Chemosphere , 55 : 421 – 430 .
  • Lai , H. Y. and Chen , Z. S. 2005 . The effect of EDTA on phytoextraction of single and combined metals-contaminated soils by rainbow pink . Chemosphere , 60 : 1062 – 1071 .
  • Lai , H. Y. and Chen , Z. S. 2006 . The effects of cadmium, zinc, and lead interactions on the accumulation of metals by rainbow pink . J. Hazard. Mater. , 137 : 1710 – 1718 .
  • Lai , H. Y. and Chen , Z. S. 2007 . Effects of multi-dose EDTA application on the phytoextraction of Cd, Zn, and Pb by rainbow pink (Dianthus chinensis) in contaminated soil . Desalination , 210 : 236 – 247 .
  • Lombi , E. , Zhao , F. J. , Dunham , S. J. and McGrath , S. P. 2001 . Phytoremediation of heavy metal-contaminated soils: Natural hyperaccumulation versus chemically enhanced phytoextraction . J. Environ. Qual. , 30 : 1919 – 1926 .
  • Luo , C. L. , Shen , Z. G. , Lou , L. Q. and Li , X. D. 2006 . EDDS and EDTA-enhanced phytoextraction of metals from artificially contaminated soil and residual effects of chelant compounds . Environ. Pollut. , 144 : 862 – 871 .
  • McLean , E. O. 1982 . “ Soil pH and lime requirement ” . In Methods of soil analysis, Part 2, Chemical and Microbiological Properties , 2nd , Edited by: Page , A. L. 199 – 224 . Madison, WI : Agronomy Monograph 9 .
  • Means , J. L. , Kucak , T. and Crerar , D. A. 1980 . Relative degradation rates of NTA, EDTA and environmental implications . Environ. Pollut. Ser. B , 1 : 45 – 60 .
  • 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 . Chemosphere , 58 : 1011 – 1022 .
  • Nelson , D. W. and Sommers , L. E. 1982 . “ Total carbon, organic carbon, and organic matter ” . In Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties , 2nd , Edited by: Page , A. L. 539 – 580 . Madison, WI : Agronomy Monograph 9 .
  • 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 : 918 – 925 .
  • Rhoades , J. K. 1982 . “ Cation exchange capacity ” . In Methods of Soil Analysis, Part 2, Chemical and Microbiological Properties , 2nd , Edited by: Page , A. L. 149 – 158 . Madison, WI : Agronomy Monograph 9 .
  • Salt , D. E. , Blaylock , M. J. , Kumar , N. P.B.A. , Dushenkov , V. , Ensley , B. D. , Chet , I. and Raskin , I. 1995 . Phytoremediation: A novel strategy for the removal of toxic metals from the environment using plants . Biotechnol. , 13 : 468 – 474 .
  • Tandy , S. , Schulin , R. and Nowack , B. 2006 . The influence of EDDS on the uptake of heavy metals in hydroponically grown sunflowers . Chemosphere , 62 : 1454 – 1463 .
  • Van Engelen , D. L. , Sharpe-Pedler , R. C. and Moorhead , K. K. 2007 . Effect of chelating agents and solubility of cadmium complexes on uptake from soil by Brassica juncea . Chemosphere , 68 : 401 – 408 .
  • Vassil , A. D. , Kapulnik , Y. , Raskin , I. and Salt , D. E. 1998 . The role of EDTA in lead transport and accumulation by Indian mustard . Plant Physiol. , 117 : 447 – 453 .
  • Wu , J. , Hsu , F. C. and Cunningham , S. D. 1999 . Chelate-assisted Pb phytoremediation: Pb availability, uptake, and translocation constraints . Environ. Sci. Technol. , 33 : 1898 – 1904 .
  • Wu , L. H. , Luo , Y. M. , Xing , X. R. and Christie , P. 2004 . EDTA-enhanced phytoremediation of heavy metal contaminated soil with Indian mustard and associated potential leaching risk . Agr. Ecosystems Environ. , 102 : 307 – 318 .

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.