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Metal distribution, bioavailability and isotope variations in polluted soils from Lower Swansea Valley, UK

机译:金属分布,中斯旺西谷污染土壤的生物利用度和同位素变化

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Soils in the Lower Swansea Valley, (United Kingdom) contain elevated level of metals, enough to cause direct or indirect effects on human health. This study assesses the severity of soil pollution and bioavailability of Cu and other metals (Ni, Zn, Co, Pb and Cr) in soils with various distances from a Ni refinery. We compare Cu concentrations in operationally defined soil fractions (bioavailable, bound to Fe/Mn oxide and incorporated in organic matter) with other metals (Ni, Zn, Pb, Co, Cr) usually occurring in ores used in metallurgic processes and report their pollution and geoaccumulation indices (PI and I-geo). Further, we use Cu stable isotope ratios (delta Cu-65) to trace the fate and mobility of Cu in soils. Our data suggest a point source of contamination for some of the heavy metals including Ni (I-geo = 1.9), Zn (I-geo = 0.28) and Cu (I-geo = 3.6) near the Ni refinery. However, Co (I-geo = 0.15) and Pb (I-geo = 3.3) contaminations are likely to be linked to different sources. No elevated Cr levels (I-geo= -0.07) occur in any of the studied soils. All soil metals are predominantly associated with organic matter (50%) which reduces their bioavailibility and thus their risk for ecological and human health. The Cu isotope data show that Cu in soil organic matter is enriched in Cu-65, while the lighter isotopes (Cu-63) remain in the dissolved bioavailable Cu fraction (Delta Cu-65(organic-bioavailable) is +0.12 +/- 0.13 parts per thousand). This suggests the preferential complexation of Cu-65 with soil organic matter after dissolution of Cu deposited to the soil. Thus, Cu isotope data can effectively indicate pathways of metal migration in polluted soils.
机译:下斯旺西山谷的土壤(英国)含有升高的金属水平,足以对人类健康引起直接或间接影响。该研究评估了土壤中土壤污染和铜和其他金属(Ni,Zn,Co,Pb和Cr)的土壤污染和生物利用度的严重程度,从Ni炼油厂的各种距离。我们将Cu浓度与在操作定义的土壤级分中(生物可利用,与Fe / Mn氧化物结合并在有机物中掺入),其它金属(Ni,Zn,Pb,Co,Cr)通常在冶金过程中使用的矿石中进行,并报告其污染和地质剖钉指数(PI和i-geo)。此外,我们使用Cu稳定同位素比(Delta Cu-65)来追踪土壤中Cu的命运和迁移率。我们的数据表明,一些重金属的污染点源,包括Ni(I-Geo = 1.9),Zn(I-Geo = 0.28)和Ni炼油厂附近的Cu(I-Geo = 3.6)。然而,CO(I-Geo = 0.15)和PB(I-Geo = 3.3)污染可能与不同的来源相关联。在任何研究的土壤中,没有升高的CR水平(I-Geo = -0.07)。所有土壤金属主要与有机物(& 50%)相关,这降低了它们的生物利用度,从而造成了生态和人类健康的风险。 Cu同位素数据显示土壤有机物质中的Cu富含Cu-65,而较轻同位素(Cu-63)保留在溶解的生物可征Cu级分(Delta Cu-65(有机生物可利用)是+0.12 +/- 0.13份千分之一)。这表明Cu-65在沉积在土壤中的Cu溶解后与土壤有机物的优先络合。因此,Cu同位素数据可以有效地表明污染土壤中金属迁移的途径。

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