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粉煤灰污染区土壤和植物中重金属的积累与迁移

Accumulation and translocation of heavy metals in soil and plants from fly ash contaminated area.

作者信息

Singh Ramesh, Singh D P, Kumar Narendra, Bhargava S K, Barman S C

机构信息

Environmental Monitoring Section, Indian Institute of Toxicology Research (IITR), Lucknow- 226 001, India.

出版信息

J Environ Biol. 2010 Jul;31(4):421-30.

Abstract

The present investigation deals with the accumulation of heavy metals in fields contaminated with fly ash from a thermal power plant and subsequent uptake in different parts of naturally grown plants. Results revealed that in the contaminated site, the mean level of all the metals (Cd, Zn, Cr, Pb, Cu, Ni, Mn and Fe) in soil and different parts (root and shoots) of plant species were found to be significantly (p<0.01) higher than the uncontaminated site. The enrichment factor (EF) of these metals in contaminated soil was found to be in the sequence of Cd (2.33) > Fe (1.88) > Ni (1.58) > Pb (1.42) > Zn (1.31) > Mn (1.27) > Cr (1.11) > Cu (1.10). Whereas, enrichment factor of metals in root and shoot parts, were found to be in the order of Cd (7.56) > Fe (4.75) > Zn (2.79) > Ni (2.22) > Cu (1.69) > Mn (1.53) > Pb (1.31) > Cr (1.02) and Cd (6.06) approximately equal Fe (6.06) > Zn (2.65) > Ni (2.57) > Mn (2.19) > Cu (1.58) > Pb (1.37) > Cr (1.01) respectively. In contaminated site, translocation factor (TF) of metals from root to shoot was found to be in the order of Mn (1.38) > Fe (1.27) > Pb (1.03) > Ni (0.94) > Zn (0.85) > Cd (0.82) > Cr (0.73) and that of the metals Cd with Cr, Cu, Mn, Fe; Cr with Pb, Mn, Fe and Pb with Fe were found to be significantly correlated. The present findings provide us a clue for the selection of plant species, which show natural resistance against toxic metals and are efficient metal accumulators.

摘要

本研究涉及热电厂飞灰污染场地中重金属的积累以及自然生长植物不同部位对重金属的吸收情况。结果表明,在污染场地,土壤和植物物种不同部位(根和地上部分)中所有金属(镉、锌、铬、铅、铜、镍、锰和铁)的平均含量均显著高于未污染场地(p<0.01)。这些金属在污染土壤中的富集系数(EF)顺序为:镉(2.33)>铁(1.88)>镍(1.58)>铅(1.42)>锌(1.31)>锰(1.27)>铬(1.11)>铜(1.10)。而在根和地上部分中金属的富集系数顺序分别为:镉(7.56)>铁(4.75)>锌(2.79)>镍(2.22)>铜(1.69)>锰(1.53)>铅(1.31)>铬(1.02)以及镉(6.06)约等于铁(6.06)>锌(2.65)>镍(2.57)>锰(2.19)>铜(1.58)>铅(1.37)>铬(1.01)。在污染场地,金属从根到地上部分的转运系数(TF)顺序为:锰(1.38)>铁(1.27)>铅(1.03)>镍(0.94)>锌(0.85)>镉(0.82)>铬(0.73),并且发现金属镉与铬、铜、锰、铁;铬与铅、锰、铁以及铅与铁之间存在显著相关性。本研究结果为选择对有毒金属具有天然抗性且是高效金属积累者的植物物种提供了线索。

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