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PORE CHARACTERISTICS AND THEIR EVOLUTION IN CLAYS USING SMALL ANGLE NEUTRON SCATTERING

机译:小角度中子散射的黏土孔隙特征及其演化

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The pore characteristics and fluid transport behavior from the nano- to micrometer scale of clays at field conditions provide fundamental insights into their performance efficiency as barrier material and their role in regulating radionuclide transport in nuclear waste repositories. Small angle scattering is the canonical technique to be used when probing the inner structure of disordered systems in the 1 to 1000 nm range. In this study, we have characterized the pore features of synthetic and naturally occurring clays including illite, palygorskite, smectite, and WY bentonite using small-angle neutron scattering (SANS), and their evolution over the relevant ranges of humidity, temperature, pressure, composition, and length scale. Our results demonstrate that each clay shows unique pore features. The effects that impact on pore features include sample form and sample environment including humidity, temperature, and pressure. Analysis of the SANS data indicates significant alteration of clays on water absorption. These results suggest that SANS is particularly suited for in-situ studies of pore-scale characteristics of geological materials and the factors that impact their pore features. As emergent property, nano- to micro-scale structural characterization is crucial in providing insights into pore-scale processes, which are pertinent to upscale continuum model development for field applications.
机译:在田间条件下,粘土的孔隙特征和流体从纳米级到微米级的流体传输行为,为它们作为阻隔材料的性能效率及其在调节核废料库中放射性核素迁移中的作用提供了基本的见识。当探测1至1000 nm范围内无序系统的内部结构时,小角度散射是一种规范技术。在这项研究中,我们使用小角度中子散射(SANS)表征了合成粘土和天然粘土的孔隙特征,包括伊利石,坡缕石,蒙皂石和WY膨润土,以及它们在湿度,温度,压力,组成和长度刻度。我们的结果表明,每种粘土都具有独特的孔隙特征。影响孔特征的影响包括样品形式和样品环境,包括湿度,温度和压力。对SANS数据的分析表明,粘土在吸水率上发生了显着变化。这些结果表明,SANS特别适合于地质材料孔隙尺度特征及其影响孔隙特征的因素的原位研究。作为新兴属性,从纳米级到微米级的结构表征对于洞察孔尺度过程至关重要,而孔尺度过程与用于现场应用的高端连续体模型开发有关。

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