首页> 外文期刊>Journal of Environmental Management >Bioaccumulation of thallium and other trace metals in Biscutella laevigata nearby a decommissioned zinc-lead mine (Northeastern Italian Alps)
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Bioaccumulation of thallium and other trace metals in Biscutella laevigata nearby a decommissioned zinc-lead mine (Northeastern Italian Alps)

机译:废弃的锌铅矿附近的Biscutella laevigata中th和其他微量金属的生物富集(意大利东北阿尔卑斯山)

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The mineral body exploited in Salafossa (Eastern Dolomites) was one of the largest lead/zinc-containing mineral deposits in Europe. Both metals were mainly present as sulphides [sphalerite, ZnS and galena, PbS). Mining activity started around 1550, but it was only around 1960 that the richest veins of the minerals were discovered. The mine closed in 1985, and concentrations of several trace metals, such as thallium (Tl), iron (Fe), manganese (Mn), lead (Pb) and zinc (Zn), were detected in the soils and plant samples (Biscutella laevigata L.) that were collected from eighteen sites selected outside the mine. B. laevigata is a pseudometallophyta species, and it often grows near mining areas where the soil's metal concentrations are significantly higher than those of soil with a natural geochemical background. The total metal concentrations in the plant tissue (roots and leaves of Biscutella laevigata) and in the soil samples - both bulk-soil and the B. laevigata root system (rhizo-soil) - were determined through Inductively Coupled Plasma Optical Emission Spectrometry (ICP-OES). The metal extractability and leachability of the soil samples were estimated using soil extractions with DTPA (Diethylene-triaminepentaacetic acid). In addition, metal mobility caused by rainwater runoff was estimated by using a leaching test with a dilute solution of H_2SO_4 and HNO_3. The results showed that metals were present in a chemical form available for uptake by the plants' roots. In fact, high concentrations of the metals were also found in the plant tissue (roots and leaves) of B. laevigata, and these concentrations were higher than those whose soils present natural geochemical background levels in the corresponding rhizo-soil. Thus, B. laevigata has shown a marked ability to bioaccumulate trace metals, especially Tl and, to a lesser extent, Zn, Pb, Fe and Mn, and it can influence metal mobility in the rhizo-soil. To assess the uptake and translocation processes of the trace metals, resulting in their bioaccumulation, two different indices were calculated: the enrichment factor in roots (EFr), as the ratio between the metal concentration in belowground biomass and in the respective rhizo-soil, and the translocation factor (TF), as the ratio between the metal concentration in the leaves and the corresponding roots. For both indices, values > 1 denoted enrichment of the metal in the roots or its translocation to the upper tissues. The results showed that EFr and TF were considerably high only for Tl, reaching a maximum value of 60 for EFr and 11.6 for TF. Conversely, the other investigated metals did not show significant bioaccumulation (EFr < 1), and they showed TF > 1 only at a few sites.
机译:Salafossa(东部白云岩)中开采的矿体是欧洲最大的含铅/锌的矿床之一。两种金属主要以硫化物形式存在(闪锌矿,ZnS和方铅矿,PbS)。采矿活动始于1550年左右,但直到1960年左右,才发现了矿物最丰富的矿脉。该矿于1985年关闭,在土壤和植物样品中(Biscutella)检测到几种痕量金属的浓度,例如th(Tl),铁(Fe),锰(Mn),铅(Pb)和锌(Zn)。 laevigata L.)是从矿山外部选定的18个地点收集来的。 B. laevigata是假金属植物种类,它通常生长在采矿区附近,在该地区土壤的金属浓度明显高于具有自然地球化学背景的土壤。通过电感耦合等离子体发射光谱法(ICP)确定植物组织(Biscutella laevigata的根和叶)和土壤样品(散装土壤和B. laevigata根系(根茎土壤)中的总金属浓度) -OES)。使用DTPA(二亚乙基三胺五乙酸)对土壤进行萃取,可估算出土壤样品的金属可萃取性和可浸出性。此外,通过使用H_2SO_4和HNO_3稀溶液的浸出试验,估算了由雨水径流引起的金属迁移率。结果表明,金属以化学形式存在,可被植物的根吸收。实际上,在B. laevigata的植物组织(根和叶)中也发现了高浓度的金属,这些浓度高于土壤中相应根际土壤中具有自然地球化学背景水平的那些金属。因此,B。laevigata已显示出显着的生物富集痕量金属(特别是T1)以及较低程度的Zn,Pb,Fe和Mn的能力,并且它可以影响根际土壤中的金属迁移率。为了评估痕量金属的吸收和转运过程,从而导致其生物富集,计算了两个不同的指标:根中的富集因子(EFr),即地下生物量和各个根际土壤中金属浓度之间的比率,和易位因子(TF),作为叶片中金属浓度与相应根部之间的比率。对于这两个指数,值> 1表示根中金属富集或金属向上层组织的易位。结果表明,仅对于T1,EFr和TF相当高,对于EFr,最大值达到60,对于TF,达到最大值11.6。相反,其他被调查的金属没有显示出显着的生物蓄积性(EFr <1),并且它们仅在少数位置显示TF> 1。

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