Combining selective sequential extractions, X-Ray Absorption Spectroscopy, and X-Ray Powder Diffraction for Cu (II) speciation in soil and mineral phases

Q3 Agricultural and Biological Sciences
T. Minkina, D. Nevidomskaya, A. Soldatov, D. Pinskii, F. Mikailsoy, V. Tsitsuashvili, T. Bauer, V. Shuvaeva
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引用次数: 3

Abstract

Interaction of Cu (II) ions with the matrix of soil and mineral phases of layered silicates was assessed by the Miller method of selective sequential fractionation and a set of synchrotron X-ray methods, including X-ray powder diffraction (XRD) and X-ray absorption spectroscopy (XANES). It was shown that the input of Cu into Calcic Chernozem in the form of monoxide (CuO) and salt (Cu(NO3)2) affected the transformation of Cu compounds and their affinity for metal-bearing phases. It was found that the contamination of soil with a soluble Cu(II) salt increased the bioavailability of the metal and the role of organic matter and Fe oxides in the fixation and retention of Cu. During the incubation of soil with Cu monoxide, the content of the metal in the residual fractions increased, which was related to the possible entry of Cu in the form of isomorphic impurities into silicates, as well as to the incomplete dissolution of exogenic compounds at the high level of their input into the soil. A mechanism for the structural transformation of minerals was revealed, which showed that ion exchange processes result in the sorption of Cu (II) ions from the saturated solution by active sites on the internal surface of the lattice of dioctahedral aluminosilicates. Surface hydroxyls at the octahedral aluminum atom play the main role. X-ray diagnostics revealed that excess Cu(II) ions are removed from the system due to the formation and precipitation of coarsely crystalline Cu(NO3)(OH)3.
结合选择性顺序萃取,x射线吸收光谱,和x射线粉末衍射Cu (II)形态在土壤和矿物相
采用Miller选择性序贯分选法和x射线粉末衍射(XRD)、x射线吸收光谱(XANES)等同步加速器x射线方法,研究了Cu (II)离子与土壤基质和层状硅酸盐矿物相的相互作用。结果表明,铜以一氧化物(CuO)和盐(Cu(NO3)2)的形式进入钙质黑钙土,影响了Cu化合物的转化及其对含金属相的亲和力。结果表明,可溶性Cu(II)盐污染土壤增加了金属的生物利用度,有机质和铁氧化物在Cu的固定和滞留中的作用增加。在土壤与一氧化铜孵育过程中,残余组分中金属含量增加,这与Cu可能以同形杂质的形式进入硅酸盐以及外源化合物在高水平输入土壤时不完全溶解有关。揭示了矿物结构转变的机理,表明离子交换过程导致饱和溶液中的Cu (II)离子被二八面体硅酸铝晶格内表面的活性位点吸附。八面体铝原子上的表面羟基起主要作用。x射线诊断显示,由于粗晶Cu(NO3)(OH)3的形成和沉淀,过量的Cu(II)离子被从体系中去除。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Eurasian Journal of Soil Science
Eurasian Journal of Soil Science Environmental Science-Environmental Science (miscellaneous)
CiteScore
2.00
自引率
0.00%
发文量
40
审稿时长
16 weeks
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