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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Immobilization of Ni by Al-modified montmorillonite: A novel uptake mechanism
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Immobilization of Ni by Al-modified montmorillonite: A novel uptake mechanism

机译:铝改性蒙脱土固定化镍的新型吸收机理

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摘要

The sorption capacity of montmorillonite clay minerals for small cations, such as Ni2+, can be greatly enhanced by modifying the clay mineral with Al(III). In this study, the mechanisms of Ni uptake by Al-modified montmorillonite were studied using extended x-ray absorption fine structure (EXAFS) spectroscopy of powders and polarized EXAFS spectroscopy of self-supporting clay films to delineate the binding structure of Ni formed as a function of the reaction conditions. Analysis of powder EXAFS spectra of wet pastes, collected from Ni-treated Al-modified montmorillonites reacted at pH 5-8, 25 degrees C or 80 degrees C (to accelerate the reaction process), and reaction times ranging from I month to 9 yrs, showed that Ni was surrounded on average by 6 O atoms at a distance of 2.05 angstrom and 6 Al atoms at 3.01 angstrom, suggesting the incorporation of Ni into a gibbsite-like structure. Only at pH 8, Ni-containing precipitates were congruently formed. Polarized EXAFS spectroscopy of self-supporting Ni-reacted Al-modified montmorillonite clay films showed a pronounced angular dependency of the spectra of the Ni-doped gibbsite, indicating that the orientation of this Ni-doped gibbsite coincided with the layering of the montmorillonite. Data analysis suggested that Ni is included slightly above and below the vacant octahedral sites of the postulated interstitial gibbsite monolayer. This newly identified mechanism of metal uptake by Al-modified montmorillonite provides a large metal sorption capacity and, because the metal is included in a monolayer gibbsite or gibbsite "islands" formed in the interstitial space of the clay mineral, it potentially leads to a permanent sequestration of the metal from the environment. Copyright (c) 2005 Elsevier Ltd.
机译:通过用Al(III)改性粘土矿物,可以大大提高蒙脱土粘土矿物对Ni2 +等小阳离子的吸附能力。在这项研究中,使用粉末的扩展X射线吸收精细结构(EXAFS)光谱和自支撑粘土膜的偏光EXAFS光谱研究了Al改性蒙脱土吸收Ni的机理,以描述形成的Ni的结合结构。反应条件的功能。分析从镍处理过的Al改性蒙脱土在pH 5-8、25摄氏度或80摄氏度下反应(以加速反应过程)收集的湿糊的粉末EXAFS光谱,反应时间从1个月到9年不等的结果表明,Ni平均被6个O原子包围,相距2.05埃,6个Al原子围绕3.01埃,表明Ni结合到了菱铁矿状结构中。仅在pH为8时,才形成含镍的沉淀物。自支撑镍反应的Al改性蒙脱土粘土膜的偏光EXAFS光谱显示出Ni掺杂三水铝石的光谱具有明显的角度依赖性,表明该Ni掺杂三水铝石的取向与蒙脱土的层合一致。数据分析表明,在假定的间隙性三水铝石单层的空八面体位点的上方和下方都包含Ni。新近确定的铝改性蒙脱土吸收金属的机制提供了较大的金属吸附能力,并且由于金属包含在粘土矿物间隙空间中形成的单层水铝石或水铝石“岛”中,因此有可能导致永久性隔离环境中的金属。版权所有(c)2005 Elsevier Ltd.

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