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首页> 外文期刊>Clays and clay minerals >INTERACTION BETWEEN Lu CATIONS AND 2:1 ALUMINOSILICATES UNDER HYDROTHERMAL TREATMENT
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INTERACTION BETWEEN Lu CATIONS AND 2:1 ALUMINOSILICATES UNDER HYDROTHERMAL TREATMENT

机译:水热处理下Lu阳离子与2:1硅铝酸盐的相互作用

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Smectites are considered to be an important component in backfill barriers due to their marked swelling and high cation exchange capacity. Both properties are affected considerably when these clays transform under natural conditions. However, we have recently described a chemical interaction between high-activity radionuclide simulators and smectites which could prove to be effective at immobilizing radionuclides definitively. Investigating the efficiency of this mechanism, independent of bentonite ageing, is a challenge. For this purpose, the reactivity shown by a non-expandable layered aluminosilicate, muscovite, has been compared to that shown by an expandable one, beidellite. Both samples were treated hydrothermally with a solution of lutetium nitrate, and the transformations were studied by X-ray diffraction, nuclear magnetic resonance and scanning electron microscopy/energy dispersive X-ray analysis. Lutetium cations react with the silicon framework of both 2:1 layered aluminosilicates under hydrothermal conditions, and new phases, lutetium disilicate, kaolinite, boehmite and natrosilite are generated. The results demonstrate that the efficiency of the chemical mechanism is not determined by the swelling and the cation exchange capacity of 2:1 layered aluminosilicates. Thus, the rare earth disilicate formation might account for the success of the clay barrier, once bentonite has lost its swelling and cation exchange capacity.
机译:绿土由于其明显的溶胀和高阳离子交换能力而被认为是回填屏障中的重要成分。当这些粘土在自然条件下转变时,两种性能都会受到很大影响。然而,我们最近描述了高活性放射性核素模拟器与蒙脱石之间的化学相互作用,这可能证明可以有效地固定放射性核素。不管膨润土的时效如何,研究这种机理的效率都是一个挑战。为此,已经将不可膨胀的层状硅铝酸盐白云母显示的反应性与可膨胀的贝得石显示的反应性进行了比较。两种样品均用硝酸溶液进行水热处理,并通过X射线衍射,核磁共振和扫描电子显微镜/能量色散X射线分析研究了转变。 hydro阳离子在水热条件下与两种2:1层状铝硅酸盐的硅骨架反应,并生成新相,即二硅酸,、高岭石,勃姆石和钠硅石。结果表明,化学机理的效率不受2:1层状铝硅酸盐的溶胀和阳离子交换能力的影响。因此,一旦膨润土失去了膨胀和阳离子交换能力,稀土二硅酸盐的形成就可能说明粘土屏障的成功。

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