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Role of Various Extractants in Removing Group-IIB Elements of Soils Incubated with EDTA

机译:各种萃取剂在去除EDTA培养的土壤中IIB族元素中的作用

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摘要

This paper presents the results of an experimental investigation undertaken to evaluate different extractant solutions viz. HCl, Mg(NO3)2, and DTPA with the range of concentration from 0.001 to 0.1N after incubation with group-IIB metals (Zn, Cd, and Hg) and EDTA to understand the capability to remove Zn, Cd, and Hg from soils. Two noncontaminated soils, one acidic (GHL) and the other alkaline (KAP), in reaction were taken from an agricultural field of West Bengal, India for this investigation. Experiments were conducted on these two soils spiked with ZnII, CdII, and HgII in concentrations of 612, 321, and 215 mg/kg for soil GHL and 778, 298, and 157 mg/kg for soil KAP, respectively, which simulate typical electroplating waste contamination. The removal of Zn, Cd, and Hg in soil GHL within the range of HCl concentrations was 8.2—16.5, 12.2—19.1, and 4.3—6.9 whereas these were 6.5—7.6, 8.5—14.1, and 3.2—5.2 in soil KAP. The removal of Zn, Cd, and Hg in soil GHL within the range of Mg(NO3)2 concentrations were 12.2—28.5, 19.1—24.6, and 18.2—19.1 whereas these were 9.1—12.1, 8.3—12.1, and 10.6—48.1 in soil KAP. For DTPA extractant, the percent removal of metal was found to be significantly higher than the other two extractants, which corroborates that DTPA is a better extractant for soil cleaning.
机译:本文介绍了评估不同萃取剂溶液的实验研究结果。与IIB组金属(Zn,Cd和Hg)和EDTA孵育后,HCl,Mg(NO3) 2 和DTPA的浓度范围为0.001至0.1N,以了解其去除能力土壤中的锌,镉和汞。来自印度西孟加拉邦的一块农田中的两种未污染土壤,一种是酸性(GHL),另一种是碱性(KAP),进行了调查。在掺有Zn II ,Cd II 和Hg II 的这两种土壤上进行了试验,浓度分别为612、321和215 mg /分别对GHL的土壤kg千克,对KAP的土壤778、298和157 mg / kg进行模拟,模拟了典型的电镀废物污染。在HCl浓度范围内,土壤GHL中Zn,Cd和Hg的去除率为8.2-16.5、12.2-19.1和4.3-6.9,而在土壤KAP中的去除率为6.5-7.6、8.5-14.1和3.2-5.2。在Mg(NO3) 2 浓度范围内的土壤GHL中的Zn,Cd和Hg去除分别为12.2-28.5、19.1-24.6和18.2-19.1,而它们分别为9.1-12.1、8.3土壤KAP值分别为12.1和10.6-48.1。对于DTPA萃取剂,发现金属去除率显着高于其他两种萃取剂,这证实了DTPA是用于土壤清洁的更好萃取剂。

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