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Heavy-metal displacement in chelate-treated soil with sludge during phytoremediation

机译:植物修复过程中含污泥螯合处理土壤中的重金属置换

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Heavy metals (HMs) in domestic sewage sludge, applied to land, contaminate soils. Phytoremediation is the use of plants to clean-up toxic HMs from soil. Chelating agents are added to soil to solubilize the metals for enhanced uptake. Yet no studies report the displacement of HMs in soil with sludge following solubilization with chelates. The objective of this work was to determine the uptake or leaching of HMs due to a chelate added to a soil from a sludge farm that had received sludge for 25 y. The soil was placed in long columns (105 cm long; circle divide 39cm) in a greenhouse. Columns either had a plant (hybrid poplar; Populus deltoides Marsh. x P nigra L.) or no plant. After the poplar seedlings had grown for 144 d, the tetrasodium salt of the chelating agent EDTA was irrigated onto the surface of the soil at a rate of 1 g per kg of soil. Drainage water, soil, and plants were analyzed for three toxic HMs (Cd, Ni, Pb) and four essential HMs (Cu, Fe, Mn, Zn). At harvest, extractable and total concentrations of each HM in the soil with EDTA were similar to those in soil without EDTA. The chelate did not affect the concentrations of HMs in the roots or leaves. With or without plants, EDTA mobilized all seven HMs and increased their concentrations in drainage water. Lower concentrations of Cd, Cu, Fe, Ni, and Zn in leachate from columns with EDTA and plants compared to columns with EDTA and no plants showed that poplars can reduce groundwater contamination by intercepting these HMs in the soil. But the poplar plants did not reduce Pb and Mn in the leachate from columns with EDTA. Concentrations of Cd and Pb in the leachate mobilized by EDTA remained above drinking-water standards with or without plants. The results showed that a chelate (EDTA) should not be added to a soil at a sludge farm to enhance phytoremediation. The chelate mobilized HMs that leached to drainage water and contaminated it.
机译:应用于土地的生活污泥中的重金属(HMs)污染了土壤。植物修复是利用植物从土壤中清除有毒的重金属。螯合剂被添加到土壤中以溶解金属以增加吸收。然而,尚无任何研究报道在螯合剂溶解后污泥中HMs的置换。这项工作的目的是确定由于从已接受污泥25年的污泥场的土壤中添加了螯合物而导致的HMs的吸收或浸出。将土壤放在温室中的长柱子中(长105厘米;圈距39厘米)。柱子上没有植物(杂交杨树; Populus deltoides Marsh。x P nigra L.),也没有植物。杨树幼苗生长144天后,将螯合剂EDTA的四钠盐以每千克土壤1 g的速度灌溉到土壤表面。分析了排水,土壤和植物中的三种有毒重金属(Cd,Ni,Pb)和四种必需重金属(Cu,Fe,Mn,Zn)。收获时,含EDTA的土壤中每种HM的可提取浓度和总浓度与不含EDTA的土壤中的相似。螯合物不影响根或叶中HMs的浓度。无论有无植物,EDTA都动员了所有七个HM,并增加了它们在排水中的浓度。与使用EDTA的色谱柱相比,使用EDTA的色谱柱和植物中渗滤液中Cd,Cu,Fe,Ni和Zn的浓度更低,没有植物显示出白杨可以通过截留土壤中的这些HM来减少地下水污染。但是,杨树植株未从带有EDTA的色谱柱中还原渗滤液中的Pb和Mn。在有或没有植物的情况下,EDTA调集的渗滤液中Cd和Pb的浓度仍高于饮用水标准。结果表明,不应在污泥场的土壤中添加螯合剂(EDTA)以增强植物修复作用。螯合物动员了HM,这些HM浸出到排水中并受到污染。

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