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Soil REE patterns as tracers of the emplacement of metal-rich anthropogenic materials. A case study in Moa (Cuba)

机译:土壤REE模式作为富含金属的人的人的人的人的人为材料的示踪剂。 MOA(古巴)案例研究

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PurposeAre rare earth element (REE) patterns employable as tracers in human interventions of bulk soil disturbances, when high concentrations of metals are involved in the in situ soil disturbance? In terms of bulk soil disturbance, it is difficult to distinguish between bulk soil disturbances and emplacement of new earthen material. Chemical fingerprinting, in particular REE plus yttrium, is applied across many fields, but predominantlyin tracking the sources of potential environmental contaminants.Materials and methodsThe REE normalised patterns (HNO3:HF:HCl 3:1:1 digestion, ICP-MS) of two Calcaric Cambisols were compared with those of a Geric Ferralsol (Novic, Technic) originated from selective overburden of nickel mining (20 degrees 40 N, 75 degrees 35 W).Results and discussionThe sum of REE, including Y and Sc, ranged between 48 and 101mgkg(-1). Principal component analysis (PCA) shows a discriminant role of REE. REE signature normalised to the upper continental crust shows slight positive Eu and negative Ce anomalies in the case of both Calcaric Cambisols, while the Geric Ferralsol shows anomalous patterns with the same anomalies plus a slight positive anomaly of Y, as a consequence of the addition of mining by-products.ConclusionsHere, we show that REE patterns of the individual horizons of a soil have characteristics that allow us to distinguish undisturbed from soils mixed with other soil materials, including those with different pH values and high metal contents (e.g. Cr, Mn, and Ni 0.5%, Fe 5wt%). Our results demonstrate, by using soils with contrasting characteristics, that their origins can be traced via the patterns of their REEs, even in the presence of high concentrations of other metals. In perspective, when background maps of all REE elements in soils are available worldwide on an appropriate scale, this enables us to obtain a level of discriminatory detail on a local scale.
机译:Purposeare稀土元素(REE)模式可用作人类干预散装土壤干扰的示踪剂,当涉及原位土壤干扰的高浓度金属时?在散装土壤障碍方面,难以区分散装土壤紊乱和新土壤材料的施加。化学指纹纹理,特别是REE加钇,适用于许多领域,但主要追踪潜在环境污染物的来源。方法和方法归一化模式(HNO3:HF:HCL 3:1:1消化,ICP-MS)两者与源于镍挖掘的选择性覆盖(20度40n,75度35 w)的GERIC FERRALSOL(NOVIC,TECHNIC)进行比较。结果和讨论包括Y和SC,包括y和sc,范围之间的镍级覆盖物(20度40 n,75°35度)。 101mgkg(-1)。主成分分析(PCA)显示REE的判别作用。 REE签名标准化为上部Continental Crust在钙猫雪地醇的情况下显示出轻微的正面欧盟和负CE异常,而GERIC丁醇显示出具有相同异常的异常模式加上Y的轻微正异常,因此添加挖掘副产品。结论,我们认为土壤的各个视野的REE模式具有让我们与其他土壤材料混合的土壤不受干扰的特征,包括具有不同pH值和高金属含量的土壤(例如Cr,Mn ,Ni 0.5%,Fe 5wt%)。我们的结果表明,通过使用具有对比特性的土壤,即使在高浓度的其他金属存在下,它们的起源也可以通过其REES的图案来追踪。在透视图中,当在适当的规模上以全世界提供土壤中所有REE元素的背景地图,这使我们能够在当地规模获得歧视性细节。

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