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影响从铅污染土壤中提取铅的乙二胺四乙酸(EDTA)提取法的因素。

Factors affecting EDTA extraction of lead from lead-contaminated soils.

作者信息

Kim Chulsung, Lee Yongwoo, Ong Say Kee

机构信息

Rainy River Community College, Department of Chemistry, Environmental Science Program, International Falls, MN 56649, USA.

出版信息

Chemosphere. 2003 Jun;51(9):845-53. doi: 10.1016/S0045-6535(03)00155-3.

Abstract

The effects of solution:soil ratio, major cations present in soils, and the ethylenediaminetetraacetic acid (EDTA):lead stoichiometric ratio on the extraction of lead using EDTA were studied for three different Superfund site soils, one rifle range soil, and one artificially lead-contaminated soil. Extraction of lead from the lead-contaminated soils was not affected by a solution:soil ratio as low as 3:1 but instead was dependent on the quantity of EDTA present. Results of the experiments showed that the extraction efficiencies were different for each soil. If sufficiently large amount of EDTA was applied (EDTA-Pb stoichiometric ratio greater than 10), most of the lead were extracted for all soils tested except for a Superfund site soil from a lead mining area. The differences in extraction efficiencies may be due to the major cations present in soils which may compete with lead for active sites on EDTA. For example, iron ions most probably competed strongly with lead for EDTA ligand sites for pH less than 6. In addition, copper and zinc may potentially compete with lead for EDTA ligand sites. Experimental results showed that addition of EDTA to the soil resulted in a very large increase in metals solubility. The total molar concentrations of major cations extracted were as much as 20 times the added molar concentration of EDTA. For some of the soils tested, lead may have been occluded in the iron oxides present in the soil which may affect lead extraction. While major cations present in the soil may be one of the factors affecting lead extraction efficiency, the type of lead species present also play a role.

摘要

针对三种不同的超级基金场地土壤、一种靶场土壤和一种人工铅污染土壤,研究了溶液与土壤的比例、土壤中存在的主要阳离子以及乙二胺四乙酸(EDTA)与铅的化学计量比对使用EDTA提取铅的影响。从铅污染土壤中提取铅不受低至3:1的溶液与土壤比例的影响,而是取决于EDTA的含量。实验结果表明,每种土壤的提取效率不同。如果应用足够大量的EDTA(EDTA与铅的化学计量比大于10),除了一个来自铅矿区的超级基金场地土壤外,所有测试土壤中的大部分铅都能被提取出来。提取效率的差异可能是由于土壤中存在的主要阳离子与铅竞争EDTA上的活性位点。例如,在pH小于6时,铁离子很可能与铅强烈竞争EDTA配体位点。此外,铜和锌可能潜在地与铅竞争EDTA配体位点。实验结果表明,向土壤中添加EDTA会导致金属溶解度大幅增加。提取的主要阳离子的总摩尔浓度高达添加的EDTA摩尔浓度的20倍。对于一些测试土壤,铅可能被土壤中存在的铁氧化物包裹,这可能会影响铅的提取。虽然土壤中存在的主要阳离子可能是影响铅提取效率的因素之一,但存在的铅物种类型也起作用。

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