332
Views
55
CrossRef citations to date
0
Altmetric
Original Articles

Long-Term Field Metal Extraction by Pelargonium: Phytoextraction Efficiency in Relation to Plant Maturity

, , , , , , & show all
Pages 493-505 | Published online: 22 Dec 2011

REFERENCES

  • Arshad , M , Silvestre , J , Pinelli , E , Kallerhoff , J , Kaemmerer , M , Shahid , M , Pradere , P and Dumat , C . 2008 . A field study of lead phytoextraction by various scented Pelargonium cultivars . Chemosphere. , 71 : 2187 – 2192 .
  • Baize , D and Sterckeman , T . 2001 . Of the necessity of knowledge of the natural pedo-geochemical background content in the evaluation of the contamination of soils by trace elements . Sci Total Environ. , 264 : 127 – 139 .
  • Chen , Y , Li , X and Shen , Z . 2004 . Leaching and uptake of heavy metals by ten different species of plants during an EDTA-assisted phytoextraction process . Chemosphere , 57 : 187 – 196 .
  • Couselo , J L , Navarro-Aviñó , J and Ballester , A . 2010 . Expression of the phytochelatin synthase TaPCS1 in transgenic aspen, insight into the problems and qualities in phytoremediation of Pb . Int J Phytoremediat. , 12 : 358 – 370 .
  • Cutright , T , Gunda , N and Kurt , F . 2010 . Simultaneous hyperaccumulation of multiple heavy metals by helianthus annuus grown in a contaminated sandy-loam soil . Int J Phytoremediat. , 12 : 562 – 573 .
  • Dumat , C , Chiquet , A , Gooddy , D , Juillot , F and Benedetti , M . 2001 . Metal ion geochemistry in smelter-impacted soils and soil solutions . Bulletin de la Société Géologique de France , 172 : 539 – 548 .
  • Dumat , C , Quenea , K , Bermond , A , Toinen , S and Benedetti , M F . 2006 . A study of the trace metal ion influence on the turn-over of soil organic matter in various cultivated contaminated soils . Environ Pollut. , 142 : 521 – 529 .
  • Feng , R , Wei , C , Tu , S , Tang , S and Wu , F . 2011 . Detoxification of antimony by selenium and their interaction in paddy rice under hydroponic conditions . Microchem. J. , 97 : 57 – 61 .
  • Ferrand , E , Dumat , C , Leclerc-Cessac , E and Benedetti , M . 2006 . Phytoavailability of zirconium in relation with initial speciation, solubility and soil characteristics . Plant Soil. , 287 : 313 – 325 .
  • Franco-Hernández , M , Vásquez-Murrieta , M , Patiño-Siciliano , A and Dendooven , L . 2010 . Heavy metals concentration in plants growing on mine tailings in Central Mexico . Bioresour Technol. , 101 : 3864 – 3869 .
  • Huang , J , Chen , J , Berti , W R and Cunningham , S . 1997 . Phytoremediation of lead-contaminated soils: Role of synthetic chelates in lead phytoextraction . Environ Sci Technol. , 31 : 800 – 805 .
  • Joner , E J and Leyval , C . 2001 . Time-course of heavy metal uptake in maize and clover as affected by root density and different mycorrhizal inoculation regimes . Biol Fert Soils , 33 : 351 – 357 .
  • Kim , K , Owens , G , Naidu , R and Kwon , S . 2010 . Influence of plant roots on rhizosphere soil solution composition of long-term contaminated soils . Geoderma. , 155 : 86 – 92 .
  • KrishnaRaj , S , Dan , T V and Saxena , P K . 2000 . A fragrant solution to soil remediation . Int J Phytoremediat. , 2 : 117 – 132 .
  • Lai , H , Juang , K and Chen , Z . 2010 . Large-area experiment on uptake of metals by twelve plants growing in soils contaminated with multiple metals . Int J Phytoremediat. , 12 : 785 – 797 .
  • Liang , H , Lin , T , Chiou , J and Yeh , K . 2009 . Model evaluation of the phytoextraction potential of heavy metal hyperaccumulators and non-hyperaccumulators . Environ Pollut. , 157 : 1945 – 1952 .
  • Lin , Q , Chen , Y X , He , Y F and Tian , G M . 2004 . Root-induced changes of lead availability in the rhizosphere of Oryza sativa L . Agricult Ecosys Environ. , 104 : 605 – 613 .
  • Liu , W , Zhou , Q , Zhang , Y and Wei , S . 2010 . Lead accumulation in different Chinese cabbage cultivars and screening for pollution-safe cultivars . J Environ Manag. , 91 : 781 – 788 .
  • Maestri , E , Marmiroli , M , Visioli , G and Marmiroli , N . 2010 . Metal tolerance and hyperaccumulation: Costs and trade-offs between traits and environment . Environ Exp Bot. , 68 : 1 – 13 .
  • Marchand , L , Mench , M , Jacob , D L and Otte , M L . 2010 . Metal and metalloid removal in constructed wetlands, with emphasis on the importance of plants and standardized measurements: A review . Environ Pollut. , 158 : 3447 – 3461 .
  • Mathur , S and Yadav , B K . 2009 . Phytoextraction modeling of heavy metal (lead) contaminated site using maize (Zea mays) . Practice Period Hazard Tox Radio Waste Manag. , 13 : 229 – 238 .
  • Oliver , D P , Hannam , R , Tiller , K G , Wilhelm , N S , Merry , R H and Cozens , G D . 1994 . The effects of zinc fertilization on cadmium concentration in wheat grain . J Environ Qual. , 23 : 705 – 711 .
  • Padmavathiamma , P K and Li , L Y . 2010 . Phytoavailability and fractionation of lead and manganese in a contaminated soil after application of three amendments . Bioresour Technol. , 101 : 5667 – 5676 .
  • Phaenark , C , Pokethitiyook , P , Kruatrachue , M and Ngernsansaruay , C . 2009 . Cd and Zn accumulation in plants from the Padaeng zinc mine area . Int J Phytoremediat. , 11 : 479 – 495 .
  • Quenea , K , Lamy , I , Winterton , P , Bermond , B and Dumat , C . 2009 . Interactions between metals and soil organic matter in various particle size fractions of soil contaminated with waste water . Geoderma. , 149 : 217 – 223 .
  • Rascio , N and Navari-Izzo , F . 2011 . Heavy metal hyperaccumulating plants: How and why do they do it? And what makes them so interesting? . Plant Sci. , 180 : 169 – 181 .
  • Saifullah , Meers , E , Qadir , M , de Caritat , P , Tack , F MG , Du Laing , G and Zia , M H . 2009 . EDTA-assisted Pb phytoextraction . Chemosphere , 74 : 1279 – 1291 .
  • Sarkar , D , Syam , S A , Sumathi , K MS and Rupali , D . 2008 . Chelant-aided enhancement of lead mobilization in residential soils . Environ Pollut. , 156 : 1139 – 1148 .
  • Shahid , M , Pinelli , E , Pourrut , B , Silvestre , J and Dumat , C . 2011a . Lead-induced genotoxicity to Vicia faba L. roots in relation with metal cell uptake and initial speciation . Ecotoxicol Environ Saf. , 74 : 78 – 84 .
  • Shahid , M , Pourrut , B (equivalent first authors) , Dumat , C , Winterton , P and Pinelli , E . 2011b . Lead uptake, toxicity and detoxification in plants . Rev Environ Contam Toxicol , 213 : 113 – 131 .
  • Shelmerdine , P A , Black , C R , McGrath , S P and Young , S D . 2009 . Modelling phytoremediation by the hyperaccumulating fern, Pteris vittata, of soils historically contaminated with arsenic . Environ Pollut. , 157 : 1589 – 1596 .
  • Shilev , S , Naydenov , M , Tahsin , N , Sancho , E D , Benlloch , M , Vancheva , V , Sapundjieva , K and Kuzmanova , J . 2007 . Effect of easily biodegradable amendments on heavy metal solubilization and accumulation in technical crops–a field trial . J Environ Eng Landsc Manag. , 4 : 237 – 242 .
  • Uzu , G , Sobanska , S , Aliouane , Y , Pradere , P and Dumat , C . 2009 . Study of lead phytoavailability for atmospheric industrial micronic and sub-micronic particles in relation with lead speciation . Environ Pollut. , 157 : 1178 – 1185 .
  • Uzu , G , Sobanska , S , Sarret , G , Muñoz , M and Dumat , C . 2010 . Foliar lead uptake by lettuce exposed to atmospheric fallouts . Environ Sci Technol. , 44 : 1036 – 1042 .
  • Uzu , G , Sobanska , S , Sarret , G , Sauvain , J , Pradère , P and Dumat , C . 2011 . Characterization of lead-recycling facility emissions at various workplaces: major insights for sanitary risks assessment . J Hazard Mater. , 186 : 1018 – 1027 .
  • Verma , P , George , K , Singh , H and Singh , R . 2007 . Modeling cadmium accumulation in radish, carrot, spinach and cabbage . Appl Math Model. , 31 : 1652 – 1661 .
  • Wu , C , Liao , B , Wang , S , Zhang , J and Li , J . 2010 . Pb and Zn accumulation in a Cd-hyperaccumulator (Viola Baoshanensis) . Int J Phytoremediat. , 12 : 574 – 585 .
  • Xin , J , Huang , B , Yang , Z , Yuan , J , Dai , H and Qiu , Q . 2010 . Responses of different water spinach cultivars and their hybrid to Cd, Pb and Cd-Pb exposures . J Hazard Mater. , 175 : 468 – 476 .
  • Xu , L , Zhou , S , Wu , L , Li , N , Cui , L , Luo , Y and Christie , P . 2009 . Cd and Zn tolerance and accumulation by Sedum jinianum in east China . Int J Phytoremediat. , 11 : 283 – 295 .
  • Zhang , X , Zhang , S , Xu , X , Li , T , Gong , G , Jia , Y , Li , Y and Deng , L . 2010 . Tolerance and accumulation characteristics of cadmium in Amaranthus hybridus L . J Hazard Mater. , 180 : 303 – 308 .

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.