首页> 外文期刊>Journal of environmental monitoring: JEM >Fractionation and elemental association of Zn,Cd and Pb in soils contaminated by Zn minings using a continuous-flow sequential extraction
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Fractionation and elemental association of Zn,Cd and Pb in soils contaminated by Zn minings using a continuous-flow sequential extraction

机译:连续流连续萃取法对锌矿污染土壤中锌,镉和铅的分离和元素缔合

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Fractionation and elemental association of Zn,Cd,and Pb in soils near Zn mining areas were studied using a continuous-flow sequential extraction approach.The recently developed sequential extraction procedure not only gave fractional distribution data for evaluation of the mobility or potential environmental impact of the metals,but also the extraction profiles(extractograms)which were used for study of elemental association.In addition,the elemental atomic ratio plot extractogram can be used to demonstrate the degree of anthropogenic contamination.Seventy-nine soil samples were collected in the vicinity of a Zn mine and were fractionated into 4 phases i.e.exchangeable(Fl),acid soluble(F2),reducible(F3)and oxidizable(F4)phases.Most samples were contaminated with Zn,Cd and Pb.The reducible phase is the most abundant fraction for Zn and Pb(>50%)while Cd is concentrated in the first 3 extraction steps.The distribution patterns of Cd were obviously affected by soil pH.55% of Cd appears predominantly in the Fl fraction for acidic soils while in neutral and alkaline soils,it was mostly(70%)found in the F2 + F3 fractions.The extractograms obtained from the continuous-flow extraction system revealed close association between Zn,Cd,Pb and Fe in the acid soluble phase,Cd-Pb and Zn-Fe in the reducible phase for contaminated soils.A correlation study of the 3 metals using a correlation coefficient was also performed to compare the results with the elemental association revealed by the extractograms.Atomic ratio plot extractograms of Zn/Fe,Cd/ Fe and Pb/Fe in the reducible phase,where contaminated metals are predominant,can be used to evaluate the degree of anthropogenic contamination.From the elemental atomic ratio plot,it is obvious that the contaminants Cd and Pb are mostly adsorbed on the surface of Fe oxides.Zn,which is present in an approximately 1:1 ratio with Fe in contaminated soils,does not show a similar trend to that found for Cd and Pb.
机译:采用连续流序贯提取方法研究了锌矿区附近土壤中Zn,Cd和Pb的分离及其元素缔合。最近开发的序贯提取程序不仅提供了分数分布数据,以评估铅的迁移率或潜在的环境影响。金属,但也可用于提取元素缔合的提取曲线(提取图)。此外,元素原子比图提取图可用于显示人为污染的程度。在附近收集了九十九个土壤样品锌矿分为四个阶段,即可交换(F1),酸溶(F2),可还原(F3)和可氧化(F4)相,大多数样品都被Zn,Cd和Pb污染。在前3个萃取步骤中Cd集中时,Zn和Pb的含量丰富(> 50%)。Cd的分布模式明显受土壤pH的影响.Cd的55%出现在前在酸性土壤的Fl组分中占优势,而在中性和碱性土壤的Fl组分中占多数(70%)在F2 + F3组分中。污染土壤的酸可溶性相中的Fe,还原性相中的Cd-Pb和Zn-Fe。还使用相关系数对3种金属进行了相关性研究,以将结果与提取图显示的元素缔合进行比较。 Zn / Fe,Cd / Fe和Pb / Fe处于还原性状态(主要是被污染的金属)的比率图提取图可用于评估人为污染的程度。从元素原子比率图可以明显看出污染物Cd和Pb大部分吸附在Fe氧化物的表面上。Zn在受污染的土壤中与Fe的比率约为1:1,与Cd和Pb的趋势不相似。

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