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Measurement of Temperature-Dependent Bound Water in Clays

机译:黏土中随温度变化的结合水的测量

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Heating of clay under drained conditions results in thermal expansion of the soil minerals and pore water and can also cause a change in the soil fabric, producing irrecoverable deformations. These deformations are most pronounced for normally and lightly overconsolidated clays that undergo significant net compression and have been attributed to changes of the adsorbed or bound water layer with temperature. The current article quantifies the change in bound water content through laboratory measurements of temperature dependence in the specific gravity of solid particles while accounting for the thermal expansion of the soil constituents. The experiments compare changes for three representative clays of differing mineralogy at temperatures ranging from 20 degrees C to 38 degrees C. The laboratory experiments confirm that the specific gravity of clay decreases with temperature consistent with the conversion of bound water to free water, while accounting for the thermal expansion of the pore water. The density of oven-dried solid particles obtained from gas pycnometer measurements is also lower than the value obtained from typical water submersion methods because of the existence of the bound water layer. We interpret the experimental measurements assuming a mass density of bound water and an exponential decay of bound water content with temperature. Using these assumptions, we show that the thickness of the bound water layer decreases from 9 angstrom at 20 degrees C to 6 angstrom at 40 degrees C for three clays of widely differing mineralogy.
机译:在排水条件下加热粘土会导致土壤矿物质和孔隙水的热膨胀,还会导致土壤结构发生变化,产生无法恢复的变形。对于正常和轻度过度固结的粘土,这些变形最为明显,它们经历了明显的净压缩,并归因于吸附或结合的水层随温度的变化。目前的文章通过对固体颗粒比重的温度依赖性进行实验室测量来量化结合水含量的变化,同时考虑了土壤成分的热膨胀。实验比较了三种矿物学特征的代表性粘土在20摄氏度至38摄氏度之间的变化。实验室实验证实,粘土的比重随温度的降低而降低,这与结合水向游离水的转化率一致,同时也说明了孔隙水的热膨胀。由于存在结合的水层,通过气体比重瓶测量获得的烘箱干燥固体颗粒的密度也低于通过典型的水浸入法获得的值。我们以结合水的质量密度和结合水含量随温度的指数衰减为前提来解释实验测量。使用这些假设,我们表明,对于三种矿物学差异很大的粘土,结合水层的厚度从20摄氏度的9埃降低到40摄氏度的6埃。

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