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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Competitive sorption and selective sequence of Cu(II) and Ni(II) on montmorillonite: Batch, modeling, EPR and XAS studies
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Competitive sorption and selective sequence of Cu(II) and Ni(II) on montmorillonite: Batch, modeling, EPR and XAS studies

机译:蒙脱石上Cu(II)和Ni(II)的竞争性吸附和选择性序列:批处理,建模,EPR和XAS研究

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Heavy metal ions that leach from various industrial and agricultural processes are simultaneously present in the contaminated soil and water systems. The competitive sorption of these toxic metal ions on the natural soil components and sediments significantly influences their migration, bioavailability and ecotoxicity in the geochemical environment. In this study, the competitive sorption and selectivity order of Cu(II) and Ni(II) on montmorillonite are investigated by combining the batch experiments, X-ray diffraction (XRD), electron paramagnetic resonance (EPR), surface complexation modeling and X-ray Absorption Spectroscopy (XAS). The batch experimental data show that the coexisting Ni(II) exhibits a negligible influence on the sorption behavior of Cu(II), whereas the coexisting Cu(II) reduces the Ni(II) sorption percentage and changes the shape of the Ni(II) sorption isotherm. The sorption species of Cu(II) and Ni(II) on montmorillonite over the acidic and near-neutral pH range are well simulated by the surface complexation modeling. However, this model cannot identify the occurrence of surface nucleation and the co-precipitation processes at a highly alkaline pH. Based on the results of the EPR and XAS analyses, the microstructures of Cu(II) on montmorillonite are identified as the hydrated free Cu(II) ions at pH 5.0, inner-sphere surface complexes at pH 6.0 and the surface dimers/Cu(OH)(2)(s) precipitate at pH 8.0 in the single-solute and the binary-solute systems. For the Ni(II) sorption in the single-solute system, the formed microstructure varies from the hydrated free Ni(II) ions at the pH values of 5.0 and 6.0 to the inner-sphere surface complexes at pH 8.0. For the Ni(II) sorption in the binary-solute system, the coexisting Cu(II) induces the formation of the inner-sphere complexes at pH 6.0. In contrast, Ni(II) is adsorbed on montmorillonite via the formation of Ni phyllosilicate co-precipitate/alpha-Ni(OH)(2)(s) precipitate at pH 8.0. The selective sequence of Cu(II) > Ni(II) for binding on montmorillonite can be ascribed to the differences in the metal properties and the compatibility between the configurations of the montmorillonite binding sites and those of the Cu(II)O-6/Ni(II)O-6 polyhedra. The derived findings in this study could provide significant information for the evaluation of the competitive sorption behaviors at solid/water interfaces and the fate of the coexisting heavy metal ions in multicomponent environmental systems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:从各种工业和农业过程中浸出的重金属离子同时存在于受污染的土壤和水系统中。这些有毒金属离子在自然土壤成分和沉积物上的竞争性吸附作用显着影响其在地球化学环境中的迁移,生物利用度和生态毒性。在这项研究中,结合批实验,X射线衍射(XRD),电子顺磁共振(EPR),表面络合模型和X,研究了Cu(II)和Ni(II)在蒙脱土上的竞争吸附和选择性顺序。射线吸收光谱法(XAS)。分批实验数据表明,共存的Ni(II)对Cu(II)的吸附行为的影响可忽略不计,而共存的Cu(II)降低Ni(II)的吸附百分数并改变Ni(II)的形状)吸附等温线。通过表面络合模型很好地模拟了在酸性和接近中性pH范围内蒙脱石上Cu(II)和Ni(II)的吸附种类。但是,该模型无法识别在高碱性pH值下表面成核的发生和共沉淀过程。根据EPR和XAS分析的结果,确定蒙脱土上Cu(II)的微观结构为pH 5.0的水合游离Cu(II)离子,pH 6.0的内球表面复合物和表面二聚体/ Cu(在单溶质和双溶质体系中,OH)(2)(s)在pH 8.0沉淀。对于单溶质系统中的Ni(II)吸附,形成的微观结构从pH值为5.0和6.0的水合游离Ni(II)离子到pH 8.0的内球表面配合物不等。对于二元溶质系统中的Ni(II)吸附,共存的Cu(II)在pH 6.0时诱导了内球络合物的形成。相反,Ni(II)通过形成pH 8.0的页硅酸盐共沉淀镍/α-Ni(OH)(2)(s)沉淀而吸附在蒙脱石上。 Cu(II)> Ni(II)结合在蒙脱石上的选择顺序可以归因于蒙脱石结合位点与Cu(II)O-6 /的金属性质和相容性之间的差异Ni(II)O-6多面体。这项研究中得出的发现可以为评估多组分环境系统中固体/水界面的竞争性吸附行为以及共存的重金属离子的命运提供重要信息。 (C)2015 Elsevier Ltd.保留所有权利。

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