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Chemical Speciation and Potential Mobility of Heavy Metals in the Soil of Former Tin Mining Catchment

机译:前锡矿集水区土壤中重金属的化学品种及潜在流动性

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This study describes the chemical speciation of Pb, Zn, Cu, Cr, As, and Sn in soil of former tin mining catchment. Total five sites were selected for sampling and subsequent subsamples were collected from each site in order to create a composite sample for analysis. Samples were analysed by the sequential extraction procedure using optical emission spectrometry (ICP OES). Small amounts of Cu, Cr, and As retrieved from the exchangeable phase, the ready available for biogeochemical cycles in the ecosystem. Low quantities of Cu and As could be taken up by plants in these kind of acidic soils. Zn not detected in the bioavailable forms while Pb is only present in negligible amounts in very few samples. The absence of mobile forms of Pb eliminates the toxic risk both in the trophic chain and its migration downwards the soil profile. The results also indicate that most of the metals have high abundance in residual fraction indicating lithogenic origin and low bioavailability of the metals in the studied soil. The average potential mobility for the metals giving the following order: Sn > Cu > Zn > Pb > Cr > As.
机译:该研究描述了前锡矿化集水区土壤中Pb,Zn,Cu,Cr,As和Sn的化学品种。选择共采样的总共五个站点,并从每个部位收集后续的副样物,以制造复合样品进行分析。通过使用光学发射光谱法(ICP OES)通过顺序提取方法分析样品。少量Cu,Cr,并从可交换阶段检索,即生态系统中的生物地球化学循环的准备就绪。植物在这些酸性土壤中的植物可以占用低量的铜。 Zn未以生物可利用的形式检测到,而PB仅存在于极少的样本中的可忽略量。缺乏移动形式的Pb消除了营养链中的毒性风险,并将其迁移向下土壤剖面。结果还表明,大多数金属在具有所研究的土壤中表明岩性起源和金属的低生物利用度的残留级分具有高丰度。金属的平均潜在迁移率为以下顺序:Sn> Cu> Zn> Pb> Cr>如。

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