BibTex RIS Kaynak Göster

Application of Phytoextraction Methods to Clean Heavy Metals in Contaminated Soil

Yıl 2015, Cilt: 5 Sayı: 1, 87 - 91, 01.06.2015

Öz

Chemically enhanced phytoextraction has been proposed as an effective approach to removing heavy metals from contaminated soil through the use of high biomass plants. This research is to test the effect of the applications of EDTA and DTPA (0, 4, 8 mmol kg-1) on the phytoextraction of maize (Zea mays) and sunflower (Helianthus annuus) grown in Pb contaminated soil. The addition of a chelate, 8 mmol/kg ethylenediamine-tetracetic acid (EDTA), increased the proportion of phytoavailable Pb in the soil (dissolved in soil solution and exchangeable from soil colloids), and also their uptake by tested plants up to 11 times (Zeya mays), 19 times (H.annus) respectively compared to the control.

Kaynakça

  • Мур Дж., Рамамурти С. Тяжелые металлы в природных водах. М.: Мир, 1987. 286 c.
  • Dermont G, Bergeron M., Mercier G., M. Richer-Lafl`eche. Soil washing for metal removal: A review of physical/
  • chemical technologies and field applications // J. Hazard Mater. 2007. Vol. 152. P. 1-31.
  • Chaney, R.L. The potential for heavy metal exposure from urban gardens and soils. In: J.R. Preer ed. Proceedings of
  • the symposium on heavy metals in urban gardens. Agricultural Experiment Station, University of the District of
  • Columbia, Washington. 1984.pp. 37-84.
  • ong J, Cao X, Zhou Q, Ma LQ Accumulation of Pb, Cu, and Zn in native plants growing on a contaminated Florida
  • site. Science of the Total Environment 368: 456–464Harter, R.D. 1999. Effect of Soil pH on Adsorption of Lead
  • Copper, Zinc and Nickel. American Journal of the Soil Science Society, Vol. 47, (2006) pp.47-45
  • Bucheli-Witschel, M. and Egli, T. 2001. Environmental fate and microbial degradation of aminopolycarboxylic
  • acids. FEMS Microbiol. Rev., 25: 69–106.
  • Huang JW, Chen J, Berti WR, Cunningham SD Phytoremediation of lead-contaminated soils: role of synthetic
  • chelates in lead phytoextraction, Environmental Science and Technology 31: (1997) 800-805
  • Shen, Z.G., Li, X.D., Chen, H.M., Wang, C.C. and Chua, H.. Lead phytoremediation from contaminated soil with
  • high biomass plant species, J.Environ. Qual. Vol. 31, 2002 pp. 1893–1900.
  • Серегин И.В., Иванов В.Б. Физиологические аспекты токсического действия кадмия и свинца на высшие
  • растения // Физиология растений. – 2001. – Т. 48. – С. 606-630.
  • Кабата Пендиас . Микроэлементы в почвах и растениях-М.:Мир.(1989) 439с
Yıl 2015, Cilt: 5 Sayı: 1, 87 - 91, 01.06.2015

Öz

Kaynakça

  • Мур Дж., Рамамурти С. Тяжелые металлы в природных водах. М.: Мир, 1987. 286 c.
  • Dermont G, Bergeron M., Mercier G., M. Richer-Lafl`eche. Soil washing for metal removal: A review of physical/
  • chemical technologies and field applications // J. Hazard Mater. 2007. Vol. 152. P. 1-31.
  • Chaney, R.L. The potential for heavy metal exposure from urban gardens and soils. In: J.R. Preer ed. Proceedings of
  • the symposium on heavy metals in urban gardens. Agricultural Experiment Station, University of the District of
  • Columbia, Washington. 1984.pp. 37-84.
  • ong J, Cao X, Zhou Q, Ma LQ Accumulation of Pb, Cu, and Zn in native plants growing on a contaminated Florida
  • site. Science of the Total Environment 368: 456–464Harter, R.D. 1999. Effect of Soil pH on Adsorption of Lead
  • Copper, Zinc and Nickel. American Journal of the Soil Science Society, Vol. 47, (2006) pp.47-45
  • Bucheli-Witschel, M. and Egli, T. 2001. Environmental fate and microbial degradation of aminopolycarboxylic
  • acids. FEMS Microbiol. Rev., 25: 69–106.
  • Huang JW, Chen J, Berti WR, Cunningham SD Phytoremediation of lead-contaminated soils: role of synthetic
  • chelates in lead phytoextraction, Environmental Science and Technology 31: (1997) 800-805
  • Shen, Z.G., Li, X.D., Chen, H.M., Wang, C.C. and Chua, H.. Lead phytoremediation from contaminated soil with
  • high biomass plant species, J.Environ. Qual. Vol. 31, 2002 pp. 1893–1900.
  • Серегин И.В., Иванов В.Б. Физиологические аспекты токсического действия кадмия и свинца на высшие
  • растения // Физиология растений. – 2001. – Т. 48. – С. 606-630.
  • Кабата Пендиас . Микроэлементы в почвах и растениях-М.:Мир.(1989) 439с
Toplam 18 adet kaynakça vardır.

Ayrıntılar

Diğer ID JA39EV86SV
Bölüm Araştırma Makalesi
Yazarlar

К. гул Bu kişi benim

г.ж. турметова Bu kişi benim

А.К. убайдуллаева Bu kişi benim

г.а. бабаева Bu kişi benim

Yayımlanma Tarihi 1 Haziran 2015
Gönderilme Tarihi 1 Haziran 2015
Yayımlandığı Sayı Yıl 2015 Cilt: 5 Sayı: 1

Kaynak Göster

APA гул, К., турметова, г., убайдуллаева, А., бабаева, г. (2015). Application of Phytoextraction Methods to Clean Heavy Metals in Contaminated Soil. Manas Journal of Agriculture Veterinary and Life Sciences, 5(1), 87-91.