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在EDTA辅助的生物固体土壤植物修复中重金属的置换

Heavy metal displacement in EDTA-assisted phytoremediation of biosolids soil.

作者信息

Liphadzi S, Kirkham M B

机构信息

Water Research Commission, 395 Frederika Street, Rietfontein, Pretoria.

出版信息

Water Sci Technol. 2006;54(5):147-53. doi: 10.2166/wst.2006.557.

Abstract

Chelating agents are added to soil to solubilise the metals for enhanced phytoextraction. Yet no studies follow the displacement and leaching of heavy metals in soil with biosolids following solubilisation with chelates. The objective of this work was to determine the mobility of heavy metals in biosolids in a soil from a sludge farm that had received biosolids for 25 years. The soil was placed in columns in a greenhouse. Columns either had a plant (poplar) 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 was analysed for three toxic heavy metals and four essential heavy metals. Without EDTA, concentrations of the seven heavy metals in the leachate from columns with or without plants were low or below detection limits. With or without plants, the EDTA mobilised all heavy metals and increased their concentration in drainage water. Without plants, the concentrations of Cd, Cu, Fe, and Zn in the leachate from columns with EDTA were above drinking-water standards. The presence of poplar plants in the soil reduced the concentrations of Cu, Fe, and Zn in the leachate so it fell within drinking-water standards. Concentrations of Cd and Pb in the leachate remained above drinking-water standards with or without plants.

摘要

螯合剂被添加到土壤中以使金属溶解,从而增强植物提取作用。然而,尚无研究追踪在用螯合剂溶解后,生物固体中重金属在土壤中的置换和淋溶情况。这项工作的目的是确定在一个已接收生物固体25年的污泥农场土壤中,生物固体中重金属的迁移性。将土壤放置在温室中的柱体里。柱体中要么种有植物(杨树),要么没有植物。在杨树幼苗生长144天后,以每千克土壤1克的速率将螯合剂乙二胺四乙酸(EDTA)的四钠盐灌溉到土壤表面。对排水中的三种有毒重金属和四种必需重金属进行了分析。在没有EDTA的情况下,有植物或无植物柱体渗滤液中七种重金属的浓度很低或低于检测限。无论有无植物,EDTA都能使所有重金属活化,并增加其在排水中的浓度。在没有植物的情况下,添加EDTA的柱体渗滤液中镉、铜、铁和锌的浓度高于饮用水标准。土壤中有杨树植物使渗滤液中铜、铁和锌的浓度降低,使其符合饮用水标准。无论有无植物,渗滤液中镉和铅的浓度均高于饮用水标准。

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