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Heating-freezing effects on the pore size distribution of a kaolinite clay

机译:加热冷冻对高岭石黏土孔径分布的影响

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摘要

This study aims to quantify the effect of heating and freezing temperatures on the pore size distribution of saturated clays. Three kaolinite clay specimens were subjected to different temperatures: 20, 70, and -10 degrees C. Upon achieving the desired temperature for each specimen, the specimens were flash frozen in liquid nitrogen to preserve their microstructure. Each specimen was, then, freeze-dried for 24 h after which consecutive two-dimensional (2-D) SEM images were taken using a dual focused ion beam/scanning electron microscope. The produced 2-D images of each specimen were used to reconstruct three-dimensional tomographies of the specimens, which were analyzed to determine the pore size distribution at each temperature. Compared to the specimen at room temperature, the pores in the specimen subjected to -10 degrees C were larger; this is believed to be due to the formation of ice lenses inside the pores upon freezing and potential merging between initial pores to form larger pores. On the other hand, the heated specimen showed an increase in the volume of the smaller pores and a decrease in the volume of the larger pores compared to the specimen at room temperature. This opposite behavior between the small and large pores in the heated specimen is justified considering (1) the easier flow of water out of the larger pores compared to that in the smaller pores and (2) the anisotropic nature of the thermal expansion of the clay particles.
机译:这项研究旨在量化加热和冷冻温度对饱和黏土孔径分布的影响。三个高岭石粘土样品经受不同的温度:20、70和-10摄氏度。在达到每个样品所需的温度后,将样品在液氮中速冻以保持其微观结构。然后将每个样品冷冻干燥24 h,然后使用双聚焦离子束/扫描电子显微镜拍摄连续的二维(2-D)SEM图像。每个样品产生的二维图像用于重建样品的三维断层扫描,然后对其进行分析以确定每个温度下的孔径分布。与室温下的样品相比,-10℃的样品中的孔更大;据信这是由于冻结后在孔内部形成冰晶和潜在的在初始孔之间合并以形成较大的孔。另一方面,与室温下的样品相比,加热的样品显示较小孔的体积增加而较大孔的体积减少。考虑到(1)与较小的孔相比,水从较大的孔中流出更容易,并且(2)粘土的热膨胀具有各向异性,因此在加热的试样中,较大和较小的孔之间存在相反的行为是合理的。粒子。

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