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Vegetable species for phytoextraction of boron, copper, lead, manganese and zinc from contaminated soil

机译:从受污染土壤中提取硼,铜,铅,锰和锌的植物

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Phytoremediation is an attractive option to remove metal from contaminated soil since it is a simple, low-cost, and environmentally friendly procedure. To better examine the phytoremediation potential of kenaf (Hybiscus canabinnus), mustard (Brassica juncea), turnip (Raphunus sativus) and amaranth (Amaranthus crentus) plants, a greenhouse experiment was performed in which these species were grown on a soil contaminated with Zn, Cu, Mn, Pb and B. The translocation, the bioconcentration and the removal index, the transference factor and the time to reach 50% of element removal from soil, among other indicators, were used in order to identify a hyperaccumulator. Kenaf plants were more tolerant to the conditions tested, with the highest dry matter production and no visual toxicity symptoms. Amaranth would be the species chosen to remediate the soil under field conditions as it presented the higher indexes for decontamination of Zn and Mn and was also able to remove B. Turnip showed the best results for Pb removal. All species tested were able to remove B from soil. In spite, none of the plant species tested could be characterized as a hyperaccumulator.
机译:植物修复是一种从污染土壤中去除金属的有吸引力的选择,因为它是一种简单,低成本且环保的方法。为了更好地研究洋麻(Hybiscus canabinnus),芥菜(Brassica juncea),芜菁(Raphunus sativus)和a菜(Amaranthus crentus)植物的修复潜力,我们进行了温室试验,将这些物种种植在受Zn污染的土壤上, Cu,Mn,Pb和B。易位,生物浓度和去除指数,迁移因子和达到从土壤中去除元素50%的时间,以及其他指标,用于鉴定超积累物。红麻植物对测试条件的耐受性更高,干物质产量最高,无视觉毒性症状。 mar菜是在野外条件下修复土壤的物种,因为它具有较高的Zn和Mn净化指数,并且能够去除B。芜菁显示出去除Pb的最佳结果。测试的所有物种都能够从土壤中去除B。尽管如此,没有一种被测试的植物可以被描述为超蓄积性。

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