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铜在表层和次表层土壤层中的分布。

Copper distribution in surface and subsurface soil horizons.

机构信息

Department of Plant Biology and Soil Science, Faculty of Biology, University of Vigo, Lagoas, Marcosende, 36310, Vigo, Pontevedra, Spain.

出版信息

Environ Sci Pollut Res Int. 2014 Sep;21(18):10997-1008. doi: 10.1007/s11356-014-3084-4. Epub 2014 Jun 3.

Abstract

The horizons of four natural soils were treated with Cu(2+) in an acid medium to study the retention capacity of Cu. The possible mineralogical changes arising because of the treatment were also studied. The soil properties and characteristics with the greatest influence on the metal retention and its distribution among the different soil fractions were determined. Crystalline phases of each horizon were determined by X-ray diffraction (XDR). The morphology, structural distribution and particle chemical composition of soil samples were investigated using field emission scanning electron microscopy. Cu distribution in the different geochemical phases of the soil was studied using a sequential extraction. The treatment led to an increase in the amorphous phases and the formation of new crystalline phases, such as rouaite (Cu2(NO3)(OH)3) and nitratine (NaNO3). Cu was also found superficially sorbed on amorphous hydroxy compounds of Fe that interact with albite, muscovite and gibbsite, and also on spherical and curved particles of aluminium clays. The largest amount of Cu retained was in an exchangeable form, and the smallest amount associated with the crystalline Fe oxides and residual fraction. In the surface horizons, the predominant Cu retention process is complexation in organomineral associations, while in the subsurface horizons it is adsorption.

摘要

采用 Cu(2+)对四种天然土壤的边界层进行了酸处理,以研究 Cu 的保持能力。还研究了可能由于处理而产生的矿物学变化。确定了对金属保留及其在不同土壤级分中分布影响最大的土壤特性和特征。通过 X 射线衍射(XDR)确定每个土层的结晶相。使用场发射扫描电子显微镜研究了土壤样品的形态、结构分布和颗粒化学组成。采用连续提取法研究了 Cu 在土壤不同地球化学相中的分布。处理导致非晶相增加和新结晶相的形成,如 rouaite(Cu2(NO3)(OH)3)和 nitratine(NaNO3)。还发现 Cu 表面吸附在与钠长石、白云母和三水铝石相互作用的无定形羟基化合物上,以及在球形和弯曲的铝粘土颗粒上。保留的最大量 Cu 以可交换形式存在,而与结晶 Fe 氧化物和残余部分结合的量最少。在表层,主要的 Cu 保留过程是有机矿物结合物的络合,而在次表层则是吸附。

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