首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Environmental availability of trace elements (Pb, Cd, Zn, Cu) in soil from urban, suburban, rural and mining areas of Attica, Hellas
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Environmental availability of trace elements (Pb, Cd, Zn, Cu) in soil from urban, suburban, rural and mining areas of Attica, Hellas

机译:城市,郊区,阿提卡农村和采矿区土壤中痕量元素(PB,CD,Zn,Cu)的环境可用性,Hellas

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The environmental availability of trace elements (Pb, Cd, Zn, Cu) in soil samples from the urban area of Athens and Piraeus is compared to that from samples of suburban, uncontaminated rural and the nearby historical mining area of Lavrion in Attica. These trace elements had been previously shown to be related to anthropogenic activities in the urban chemical environment of Athens. Trace element environmental availability is determined by using three single stage chemical extractions of (i) nitric acid (HNO3), (ii) ethylenediaminetetraacetic acid (EDTA) and (iii) acetic acid (CH3COOH), and the respective extractabilities are calculated as ratios relative to total element concentrations. All elements showed the same decreasing concentration trend in the order mining urban suburban approximate to rural soil categories. Median concentration, based on aqua regia dissolution, are 185, 173, 86, 0.4 mg/kg and 2.26% for Pb, Zn, Cu, Cd and Fe, respectively, for the urban soil samples. Whereas, the corresponding median concentrations of Pb, Zn and Cd in Lavrion soil are over ten times higher. The ratios of the extractable concentrations of Pb, Zn and Cd, relative to the aqua regia extractable content in soil, are also higher for the mining soil category. Extractable concentrations for all the studied elements are highly dependent on their respective aqua regia extractable values in all land use categories; extractability ratios are also controlled by HNO3 extractable Fe in soil. For the two toxic elements, Pb and Cd, the data of this study suggest that environmental availability has to be assessed on a site-specific basis as local conditions, and in particular the mineralogical composition of soil, may influence their relative extractability.
机译:雅典城市地区土壤样品中的痕量元素(Pb,Cd,Zn,Cu)的环境可用性与郊区,未受污染的农村和附近的Attica的历史矿区。这些微量元素之前已显示与雅典城市化学环境中的人为活动有关。通过使用(I)硝酸(HNO 3),(II)乙二胺四乙酸(EDTA)和(III)乙酸(CH 3 COOH)的三个单级化学提取来确定痕量的元素环境可用性,并且各自的萃取性被计算为相对的比率到总元素浓度。所有元素在订单挖掘中表现出相同的浓度趋势&城市&郊区与农村土壤类别近似。基于Aqua Regia溶解的中值浓度为185,173,86,0.4mg / kg,分别用于城市土壤样品的Pb,Zn,Cu,Cd和Fe的2.26%。然而,Lavion土壤中相应的Pb,Zn和Cd的中值浓度超过10倍。采矿土壤类别的可萃取浓度的Pb,Zn和Cd的可萃取浓度的浓度的比例也更高。所有研究元素的可提取浓度高度依赖于所有土地使用类别的各自的Aqua Regia可提取值;可提取性比也由土壤中的HNO3可提取的Fe控制。对于两种有毒元素,Pb和Cd,本研究的数据表明,必须在特定于特别的基础上评估环境可用性作为局部条件,特别是土壤的矿物学组成,可能影响其相对可提取性。

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