首页> 外文期刊>Journal of Contaminant Hydrology >Solubilization of lead and cadmium during the percolation of EDTA through a soil polluted by smelting activities
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Solubilization of lead and cadmium during the percolation of EDTA through a soil polluted by smelting activities

机译:在EDTA渗透过程中,通过熔炼活动污染的土壤中铅和镉的溶解

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EDTA was percolated in laboratory columns through a soil polluted by heavy metals to investigate the efficiency of and processes involved in soil decontamination by chemical extrac- tion. At high EDTA concentration (10~-2 M), elution of Pb and Cd was very efficient for one pore volume, after which it decreased to almost zero due to depletion of available Pb and Cd and to competition with Ca and Fe slowly solubilized during the passage of the EDTA front. Clogging occurred after the end of the EDTA plateau. At lower EDTA concentrations (10~-3 and 10~-4 M), elution was less efficient, but extraction decreased little with the volume percolated; moreover no Ca above background values was dissolved. The optimum EDTA concentration for heavy metal extraction ranges between 10~-2 and 10~-3 M. The higher the concentration, the greater the extraction efficiency, but as the EDTA concentration is increased there is an optimum point at which clogging takes place and permeability decreases.
机译:EDTA通过重金属污染的土壤渗入实验室的色谱柱中,以研究化学萃取对土壤进行去污的效率和过程。在高EDTA浓度(10〜-2 M)下,Pb和Cd的洗脱对于一个孔体积非常有效,之后由于可用Pb和Cd的耗尽以及与Ca和Fe的竞争而缓慢溶解,使其几乎降至零。 EDTA战线的通过。 EDTA平台结束后发生堵塞。在较低的EDTA浓度(10〜-3和10〜-4 M)下,洗脱效率较低,但随着渗滤体积的增加,萃取几乎没有减少。而且没有高于背景值的Ca被溶解。重金属萃取的最佳EDTA浓度在10〜-2和10〜-3 M之间。浓度越高,萃取效率越高,但是随着EDTA浓度的增加,存在发生堵塞和堵塞的最佳点。渗透性降低。

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