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首页> 外文期刊>Environmental Science and Pollution Research >Phytoremediation of Cu and Zn by vetiver grass in mine soils amended with humic acids
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Phytoremediation of Cu and Zn by vetiver grass in mine soils amended with humic acids

机译:腐植酸修饰的香根草对矿质土壤中铜和锌的植物修复作用

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Phytoremediation of contaminated mine soils requires the use of fast-growing, deep-rooted, high-biomass, and metal-tolerant plants with the application of soil amendments that promote metal uptake by plants. A pot experiment was performed to evaluate the combined use of vetiver grass (Chrysopogon zizanioides) and humic acid for phytoremediation of Cu and Zn in mine soils. Vetiver plants were grown in soil samples collected from two mine sites of Spain mixed with a commercial humic acid derived from leonardite at doses of 0, 2, 10, and 20 g kg(-1). Plant metal concentrations and biomass were measured and metal bioavailability in soils was determined by a low molecular weight organic acid extraction. Results showed that humic acid addition decreased organic acid-extractable metals in soil. Although this extraction method is used to estimate bioavailability of metals, it was not a good estimator under these conditions due to competition with the strong chelators in the added humic acid. High doses of humic acid also promoted root growth and increased Cu concentrations in plants due to formation of soluble metal-organic complexes, which enhanced removal of this metal from soil and its accumulation in roots. Although humic acid was not able to improve Zn uptake, it managed to reduce translocation of Zn and Cu to aerial parts of plants. Vetiver resulted unsuitable for phytoextraction, but our study showed that the combined use of this species with humic acid at 10-20 g kg(-1) could be an effective strategy for phytostabilization of mine soils.
机译:对受污染的矿土壤进行植物修复需要使用速生,根深蒂固,高生物量和耐金属的植物,并使用能促进植物吸收金属的土壤改良剂。进行了盆栽试验,以评估香根草(Chrysopogon zizanioides)和腐殖酸在矿井土壤中对铜和锌的植物修复作用。香根草植物生长在从西班牙两个矿场收集的土壤样品中,混合了分别以0、2、10和20 g kg(-1)的剂量来自于人造石的商业腐殖酸。测量了植物金属的浓度和生物量,并通过低分子量有机酸萃取确定了土壤中的金属生物利用度。结果表明,腐殖酸的添加减少了土壤中有机酸可提取的金属含量。尽管此提取方法用于估算金属的生物利用度,但在这些条件下,由于与所添加的腐殖酸中的强螯合剂竞争,因此并不是一个好的估算方法。高剂量的腐殖酸还通过形成可溶性金属-有机复合物,促进了植物根系的生长并增加了铜的浓度,从而增加了土壤中这种金属的去除以及其在根系中的积累。尽管腐殖酸不能改善锌的吸收,但它设法减少了锌和铜向植物地上部分的转运。香根草的结果不适合用于植物提取,但是我们的研究表明,该物种与腐殖酸在10-20 g kg(-1)的组合使用可能是一种有效的策略来稳定矿土壤。

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