TY - JOUR
T1 - Screening for the next generation heavy metal hyperaccumulators for dryland decontamination
AU - Ravanbakhsh, Mohammadhossein
AU - Ronaghi, Abdol Majid
AU - Taghavi, Seyed Mohsen
AU - Jousset, Alexandre
PY - 2016/6/1
Y1 - 2016/6/1
N2 - Heavy metal removal by plants bears a great potential to decontaminate soils. A major challenge remains to find plant species that accumulate heavy metal, harbor a sufficient biomass and grow in the desired environmental conditions. Here we present candidate plants for phytoremediation in arid climates. We sampled sixteen dominant plants from mining area naturally polluted with high Pb-Zn and Cd concentration. Plants were assessed for their ability to accumulate Zn, Pb and Cd and six species were selected on the base of their heavy metal concentration in shoots and leaves, enrichment coefficient and translocation factor. Out of all the tested species in field study, Alcea aucheri was the most promising one which accumulated over than 460 and 4089 ??g/g Pb in the roots and shoots, respectively. We confirmed this ability with a greenhouse experiment on soil spiked with different Pb and Cd concentrations. Concentration of Pb and Cd in aerial parts of A. aucheri were more than 1700 and 345 ??g/g in 2400 and 200 mg/kg Pb and Cd soil treatment respectively. We propose that A. aucheri as model hyperaccumulator able to live in adverse condition, producing high biomass, and supersede heavy metal accumulation reported to other plants, making of this species one of the best Pb hyperaccumulator reported to date.
AB - Heavy metal removal by plants bears a great potential to decontaminate soils. A major challenge remains to find plant species that accumulate heavy metal, harbor a sufficient biomass and grow in the desired environmental conditions. Here we present candidate plants for phytoremediation in arid climates. We sampled sixteen dominant plants from mining area naturally polluted with high Pb-Zn and Cd concentration. Plants were assessed for their ability to accumulate Zn, Pb and Cd and six species were selected on the base of their heavy metal concentration in shoots and leaves, enrichment coefficient and translocation factor. Out of all the tested species in field study, Alcea aucheri was the most promising one which accumulated over than 460 and 4089 ??g/g Pb in the roots and shoots, respectively. We confirmed this ability with a greenhouse experiment on soil spiked with different Pb and Cd concentrations. Concentration of Pb and Cd in aerial parts of A. aucheri were more than 1700 and 345 ??g/g in 2400 and 200 mg/kg Pb and Cd soil treatment respectively. We propose that A. aucheri as model hyperaccumulator able to live in adverse condition, producing high biomass, and supersede heavy metal accumulation reported to other plants, making of this species one of the best Pb hyperaccumulator reported to date.
KW - Alcea aucheri
KW - Cd
KW - Hyperaccumulator
KW - Pb
KW - Phytoremediation
U2 - 10.1016/j.jece.2016.04.013
DO - 10.1016/j.jece.2016.04.013
M3 - Article
SN - 2213-3437
VL - 4
SP - 2350
EP - 2355
JO - Journal of Environmental Chemical Engineering
JF - Journal of Environmental Chemical Engineering
IS - 2
ER -