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首页> 外文期刊>International Journal of Phytoremediation >Effects of Amendments on Copper, Cadmium, and Lead Phytoextraction by Lolium Perenne from Multiple-Metal Contaminated Solution
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Effects of Amendments on Copper, Cadmium, and Lead Phytoextraction by Lolium Perenne from Multiple-Metal Contaminated Solution

机译:修改对黑麦草提取多金属污染溶液中铜,镉和植物铅的影响

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摘要

Chemical amendments can increase metal uptake by plant roots and translocation to shoots, however their effectiveness can be influenced by the presence of other amendments and metal ions in a multiple-metal environment. A range of amendments and combinations were tested to explore their effect on phytoextraction of Cu, Cd, and Pb by perennial ryegrass (Lolium perenne) from solutions containing one or more of these metals. The amendments studied included EDDS (an aminopolycarboxylic acid), histidine (an amino acid), citric acid (an organic acid), rhamnolipid (a biosurfactant) and sulfate (an inorganic ligand). For all amendment treatments, the presence of multiple metals in solution reduced shoot concentrations of Cd and Cu, while Pb levels in shoots were generally enhanced by the presence of Cu. Although slightly toxic to the plants, EDDS (1 mM) was the most effective individual amendment for enhancing shoot metal uptake and translocation from solution without significantly reducing biomass yield. The combination Rhm+Cit+EDDS resulted in the highest shoot metal concentrations of all the treatments but also caused severe phytotoxicity. Amendment combinations Rhm+His and Sulf+Cit were less toxic for plant growth while moderately enhancing metal mass accumulation in shoots and thus could be considered as alternative treatments for enhanced phytoextraction.
机译:化学修饰剂可以增加植物根部对金属的吸收并转移到枝条上,但是其有效性会受到多金属环境中其他修饰剂和金属离子的存在的影响。测试了多种修饰剂和组合物,以探讨它们对多年生黑麦草(黑麦草)从含有一种或多种这些金属的溶液中萃取铜,镉和铅的作用。研究的修正包括EDDS(一种氨基多元羧酸),组氨酸(一种氨基酸),柠檬酸(一种有机酸),鼠李糖脂(一种生物表面活性剂)和硫酸盐(一种无机配体)。对于所有修正处理,溶液中多种金属的存在会降低芽和芽中Cd和Cu的浓度,而芽中的Pb水平通常会因Cu的存在而增加。尽管对植物有轻微毒性,但EDDS(1 mM)是在不显着降低生物量产量的情况下,增强芽金属从溶液中吸收和转运的最有效的个体改良剂。 Rhm + Cit + EDDS的组合在所有处理中均能导致最高的芽金属浓度,但也会引起严重的植物毒性。改良剂Rhm + His和Sulf + Cit组合对植物生长的毒性较小,同时适度提高了枝条中的金属质量积累,因此可以被视为增强植物提取物的替代处理方法。

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