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首页> 外文期刊>International Journal of Quantum Chemistry >Characterization of homoionic Fe2+-type montmorillonite: Potential chemical species of iron contaminant
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Characterization of homoionic Fe2+-type montmorillonite: Potential chemical species of iron contaminant

机译:Fe 2+型蒙脱土的同型离子表征:铁污染物的潜在化学物种

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Fe2+ -montmorillonite with Fe2+ ions occupying cation exchange sites is an ideal transformation product in bentonite buffer material. In our previous study on preparation and characterization of Fe 21 -montmorillonite, the montmorillonite sample that adsorbed Fe2+ ions on almost all of the cation exchange sites was prepared using a FeCl2 solution under an inert gas condition [N. Kozai, Y. Adachi, S. Kawamura, K. Inada, T. Kozaki, S. Sato, H. Ohashi, T. Ohnuki, T. Banba, J. Nucl. Sci. Technol. 38 (2001) 1141]. In view of the unstable nature of iron(H) chemical species, this study attempted to determine the potential contaminant iron chemical species in the sample. Nondestructive elemental analysis revealed that a small amount of chloride ions remained dispersed throughout the clay particles. The chloride ion retention may be due to the adsorption of FeCl+ ion pairs in the initial FeCl2 solution and the subsequent containment of the Cl- ions that are dissociated from the FeCl+ ion pairs during excess salt removal treatment. Two explanations are advanced for the second process: the slow release of the remaining Cl- ions from the collapsed interlayer of the montmorillonite, and the transformation of a minor fraction of the remaining FeCl+ ion pairs to iron(III) hydroxide chloride complexes having low solubility. (C) 2007 Elsevier Inc. All rights reserved.
机译:具有Fe 2+离子占据阳离子交换位的Fe 2+-蒙脱石是膨润土缓冲材料中的理想转化产物。在我们先前关于Fe 21-蒙脱石的制备和表征的研究中,使用FeCl2溶液在惰性气体条件下制备了在几乎所有阳离子交换位点上都吸附了Fe2 +离子的蒙脱土样品[N. N. N. N.]。 Kozai,Y。Adachi,S。Kawamura,K。Inada,T。Kozaki,S。Sato,H。Ohashi,T。Ohnuki,T。Banba,J。Nucl。科学技术。 38(2001)1141]。考虑到铁(H)化学物质的不稳定性质,本研究试图确定样品中潜在的污染物铁化学物质。无损元素分析表明,少量氯离子仍然分散在整个粘土颗粒中。氯离子保留可能是由于最初的FeCl2溶液中FeCl +离子对的吸附以及随后在过量除盐处理期间从FeCl +离子对解离的Cl-离子的容纳所致。对第二种方法提出了两种解释:从蒙脱石塌陷的中间层缓慢释放剩余的Cl-离子,以及将剩余的少量FeCl +离子对转化为溶解度低的氢氧化铁(III)氯化物络合物。 (C)2007 Elsevier Inc.保留所有权利。

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