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Accumulation of Pb, Cu, and Zn in native plants growing on a contaminated Florida site

机译:在受污染的佛罗里达州地区生长的本地植物中Pb,Cu和Zn的积累

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Contamination of heavy metals represents one of the most pressing threats to water and soil resources as well as human health. Phytoremediation can be potentially used to remediate metal-contaminated sites. This study evaluated the potential of 36plants (17 species) growing on a contaminated site in North Florida. Plants and the associated soil samples were collected and analyzed for total metal concentrations. While total soil Pb, Cu, and Zn concentrations varied from 90 to 4100, 20 to 990, and 195 to 2200mg kg(-1), those in the plants ranged from 10 to 1183, 6.0 to 460, and 17 to 598mg kg(-1), respectively. None of the plants were suitable for phytoextraction because no hyperaccumulator was identified. However, plants with a high bioconcentration factor (BCF, metal concentration ratio of plant roots to soil) and low translocation factor (TF, metal concentration ratio of plant shoots to roots) have the potential for phytostabilization. Among the plants, Phyla nodiflora was the most efficient in accumulating Cu and Zn in its shoots (TF = 12 and 6.3) while Gentiana pennelliana was most suitable for phytostabilization of sites contaminated with Pb, Cu and Zn (BCF = 11, 22 and 2.6). Plant uptake of the three metals was highly correlated, whereas translocation of Pb was negatively correlated with Cu and Zn though translocation of Cu and Zn were correlated. Our study showed that native plant species growing on contaminated sites may have the potential for phytoremediation. (c) 2006 Elsevier B.V. All rights reserved.
机译:重金属污染是对水和土壤资源以及人类健康的最紧迫威胁之一。植物修复可潜在地用于修复金属污染的场所。这项研究评估了北佛罗里达一个受污染的地点上生长的36种植物(17种)的潜力。收集植物和相关的土壤样品并分析总金属浓度。虽然土壤中铅,铜和锌的总浓度从90到4100、20到990和195到2200mg kg(-1)不等,但植物中的铅从10到1183、6.0到460和17到598mg kg( -1)。没有一种植物适合进行植物提取,因为未发现过度蓄积。然而,具有高生物浓缩因子(BCF,植物根与土壤的金属浓度比)和低转运因子(TF,植物芽与根的金属浓度比)的植物具有植物稳定的潜力。在植物中,晚疫病菌最有效地积累芽中的铜和锌(TF = 12和6.3),而半边龙胆最适合对被铅,铜和锌污染的部位进行植物稳定化处理(BCF = 11、22和2.6) )。三种金属的植物吸收高度相关,尽管铜和锌的转运相关,但铅的转运与铜和锌呈负相关。我们的研究表明,在受污染的地点生长的本地植物物种可能具有植物修复的潜力。 (c)2006 Elsevier B.V.保留所有权利。

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