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首页> 外文期刊>Clay Minerals >Comparison of microstructural features of three compacted and water-saturated swelling clays: MX-80 bentonite and Na- and Ca-purified bentonite
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Comparison of microstructural features of three compacted and water-saturated swelling clays: MX-80 bentonite and Na- and Ca-purified bentonite

机译:三种压实和水饱和膨润土MX-80膨润土以及Na和Ca纯化的膨润土的微观结构特征比较

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The planned final disposal repositories of spent nuclear fuel in several countries, including Finland, pose significant scientific challenges due to their extremely long lifespan. One of the key materials proposed for use in Posiva Oy's repository in Finland is MX-80 bentonite in a compacted, water-saturated state. Border cases of calcium and sodium forms of purified bentonite were included in this study. The MX-80 in the repository is expected to undergo cation exchange due to the composition of the groundwater. The clays were studied at different dry densities between 0.7 and 1.6 g cm(-3). The microstructure of the water-saturated, compacted clays was investigated using small-angle X-ray scattering, nuclear magnetic resonance and transmission electron microscopy. Additionally, atomic force microscopy was used to characterize the shape and size of the fine-fraction clay platelets. As expected, the average shape of the fine fractions was smaller than the bulk material, but a more elongated shape was present in the purified material. Mainly due to sample density, the pore structure was noticeably different for the Na form of purified bentonite at 0.7 g cm(-3) density, but at higher degrees of compaction, no significant differences were noted between the samples. The laboratory results obtained in this study could be useful for safety and performance analysis of this high-level waste repository where sodium bentonite is used and is expected to change its charge-compensating cation composition during the repository's lifetime. Microstructural data may be used in modelling of diffusion and sorption by surface complexation modelling, for example, or as a basis for mechanical and water transport models.
机译:计划中的包括芬兰在内的多个国家的乏核燃料最终处置库,由于使用寿命极长,因此面临着重大的科学挑战。提议在芬兰Posiva Oy仓库中使用的主要材料之一是MX-80膨润土,处于致密,水饱和状态。本研究包括钙和钠形式的纯膨润土的边际病例。由于地下水的组成,储存库中的MX-80有望进行阳离子交换。在0.7至1.6 g cm(-3)之间的不同干密度下对粘土进行了研究。使用小角X射线散射,核磁共振和透射电子显微镜研究了水饱和的致密粘土的微观结构。另外,原子力显微镜用于表征细碎粘土片的形状和大小。如预期的那样,细小部分的平均形状小于块状材料,但纯化的材料中存在更细长的形状。主要由于样品的密度,在0.7 g cm(-3)的密度下,Na形式的纯膨润土的孔结构明显不同,但是在更高的压实度下,样品之间没有显着差异。这项研究中获得的实验室结果可能对使用膨润土钠的高级废物储存库的安全性和性能分析有用,并且有望在储存库的使用寿命内改变其电荷补偿阳离子组成。微观结构数据可用于通过表面络合建模进行扩散和吸附建模,例如,或作为机械和水传输模型的基础。

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