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Phytoremediation potential of three aquatic macrophytes in manganese-contaminated water

机译:锰污染水中三种水生植物的植物修复潜力

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摘要

Manganese (Mn) uptake capacities of water hyacinth (Eichhornia crassipes (Mart.) Solms, water lettuce (Pistia stratiotes L) and slligator alternenthera (Alternan-thera philoxeroides) were investigated with four Mn levels: O(control), 50, 200, 400 mg/L. With increased Mn exposure, the tested plants showed similar responses with a decrease in relative growth rate and an increase in plant Mn concentrations. Comparatively, water lettuce had the significantly higher total Mn concentrations, shoots enrichment factor and translocation factor at all Mn-treated treatments and the much greater total Mn removal at concentrations of 200 and 400 mg/L Mn. ln most cases, Mn pollution significantly decreased Mg concentrations for all three plants. Concomitantly, increment trends of Fe, Cu and Zn concentrations were observed for water lettuce with the increasing external Mn concentrations, which could partly contribute to its higher Mn concentrations. The results indicated that water lettuce have standout potentials as a phytoremediation plant for Mn contaminated waters.
机译:研究了风信子(Eichhornia crassipes(Mart。)Solms,水莴苣(Pistia stratiotes L)和隔泥肌(Alternan-thera philoxeroides)的锰(Mn)吸收能力,其中四个Mn含量分别为O(对照),50、200, 400 mg / L。随着Mn暴露量的增加,被测植物表现出相似的响应,相对生长速率降低,植物Mn浓度升高;而莴苣中的总Mn浓度,枝条富集因子和转运因子显着更高。在200和400 mg / L的Mn浓度下,所有经过Mn处理的处理都具有更高的总Mn去除率;在大多数情况下,Mn污染会显着降低所有三株植物的Mg浓度。观察到随着外部Mn浓度的增加,水生菜可能部分地导致其较高的Mn浓度。挖掘出锰污染水域作为植物修复植物的潜力。

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