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云南个旧矿区受矿活动影响土壤中乡土植物的植物修复潜力。

Phytoremediation potential of indigenous plants growing in soils affected by mine activities in Gejiu City, Yunnan Province.

机构信息

Yunnan Research Academy of Ecological and Environmental Science, Kunming, P.R. China.

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming, P.R. China.

出版信息

Int J Phytoremediation. 2023;25(7):880-888. doi: 10.1080/15226514.2022.2117789. Epub 2022 Sep 1.

Abstract

Indigenous plants growing in mining spoils for phytoremediation have attracted great interest. To search the suitable plants, six plant species popular in the mine slag heaps of Gejiu City were collected and metal concentrations in plants and rhizosphere soils were analyzed. Results showed that the soils were greatly influenced by mine activities and heavy metal contents in plants were dependent upon those in the rhizosphere soils. However, the adaptation strategies varied among them. (Linn.) Keng and Desf. had the Cr bioaccumulation factor (BAF) of 1.48 and 1.34, respectively, even though the rhizosphere soils were not contaminated by Cr. However, and Linn. showed the BAF for Pb, Zn Cu and Sn < 1.0, and Linn. showed the similarly low BAF for Zn and Cu. Therefore, the three species had a great tolerance to phytostabilize these metals. (Retz.) Schult showed the translocation factor (TF) > 1.0 for Pb, Cu and Sn, so translocating these metals to the aboveground parts would be a feasible option. Similarly, Murr. demonstrated the high phytotranslocate capacity for Cd and Sn, so it could be employed to remedy Cd and Sn-contaminated soils.

摘要

用于植物修复的采矿废弃地生长的乡土植物引起了极大的兴趣。为了寻找合适的植物,采集了个旧市矿渣堆中流行的 6 种植物物种,并分析了植物和根际土壤中的金属浓度。结果表明,土壤受到矿山活动的严重影响,植物中的重金属含量取决于根际土壤中的重金属含量。然而,它们的适应策略各不相同。(Linn.) Keng 和 Desf.的 Cr 生物积累因子(BAF)分别为 1.48 和 1.34,尽管根际土壤未受到 Cr 污染。然而,和 Linn.对 Pb、Zn、Cu 和 Sn 的 BAF<1.0,而 Linn.对 Zn 和 Cu 的 BAF 也较低。因此,这三个物种对稳定这些金属具有很强的耐受性。(Retz.) Schult 对 Pb、Cu 和 Sn 的迁移因子(TF)>1.0,因此将这些金属转移到地上部分将是一个可行的选择。同样,Murr.对 Cd 和 Sn 具有较高的植物迁移能力,因此可以用于修复 Cd 和 Sn 污染的土壤。

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