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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal characteristics of lime- and phosphoric acid-stabilized montmorillonitic and kaolinitic soils
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Thermal characteristics of lime- and phosphoric acid-stabilized montmorillonitic and kaolinitic soils

机译:石灰和磷酸稳定的蒙脱土和高岭土的热学特性

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摘要

In this paper, thermal gravimetric (TG) method was used to study the time-dependent changes induced in thermal characteristics of lime- and phosphoric acid-stabilized soils comprised mainly of montmorillonite and kaolinite minerals. The technique was employed due to the "surface-associated" nature of soil-stabilizer reactions and the necessity of pore water presence for the formation of cementing compounds. The morphology of soils was also observed using field emission scanning electron microscopy (FESEM) prior and after treatment. From TG results, it was found that desorption of surface water was the main reason responsible for the mass losses in the lower-temperature regions. In addition, losses at around 300 A degrees C in 8-month cured samples were evident. The latter was assigned to the evaporation of moisture encapsulated into the reaction products. This was confirmed via FESEM images which revealed the formations of white lumps on the surface of soil particles. From engineering point of view, the lime stabilization technique was most effective in increasing the compressive strength of montmorillonitic soils, whereas in laterite soils rich in iron oxides, the phosphoric acid treatment showed the highest degree of improvement.
机译:本文采用热重分析法研究了主要由蒙脱土和高岭石矿物组成的石灰和磷酸稳定化土壤热特性随时间的变化。由于土壤稳定剂反应的“表面相关”性质和形成胶结化合物的孔隙水存在的必要性,因此采用了该技术。在处理之前和之后,还使用场发射扫描电子显微镜(FESEM)观察土壤的形态。从TG结果,发现地表水的解吸是造成低温区域质量损失的主要原因。此外,在8个月固化的样品中,约300 A的温度下的损耗明显。后者被分配给包封在反应产物中的水分蒸发。通过FESEM图像证实了这一点,该图像揭示了土壤颗粒表面白色团块的形成。从工程学的角度来看,石灰稳定化技术最有效地提高了蒙脱土的抗压强度,而在富含铁氧化物的红土土壤中,磷酸处理表现出最高的改善程度。

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