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Sulfate effects on sulfate-resistant cement-treated expansive soil

机译:硫酸盐对耐硫酸盐水泥处理的膨胀土壤的影响

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Even though the effectiveness of sulfate-resistant cement (SRC) in stabilizing the high sulfate-bearing expansive soils is proven, its effectiveness in controlling the volume change of expansive soils when exposed to external sulfate contaminants is not known. The physico-chemical and index properties provide basic insight into the volume change behavior of clays. Therefore, this study brings out the effect of external sulfate contamination on the physico-chemical and index properties of SRC-treated expansive soil. Three SRC contents of 5, 10, and 15% were added to the expansive soil separately and reconstituted with distilled water and cured for 1-28 days. After the desired curing period, the SRC-treated expansive soil was reconstituted with sulfate solutions of 5000, 10,000, and 20,000 ppm separately and moisture equilibrated for 1 day for the determination of the properties. The experimental results showed that the SRC treatment increased the pH from 8.75 to 11.95-12.21 and the subsequent sulfate contamination decreased the pH to 9.33-11, where the decalcification of calcium silicate hydrate occurred. Further, the effect of sulfate contamination on liquid limit of SRC-treated soil was negligible, while the plastic and shrinkage limits increased upon sulfate contamination. The increase in the shrinkage limit is attributed to the formation of ettringite/thaumasite in the voids of SRC-treated samples contaminated with 10,000-20,000 ppm sulfate solutions, whereas the monosulfate formation and destruction of cementation gels occurred in samples contaminated with 5000 ppm. These formations are evidenced with the scanning electron microscopy, energy dispersive X-ray analysis, and X-ray diffraction.
机译:尽管耐硫酸盐水泥(SRC)在稳定高硫酸盐膨胀土壤中的有效性,但其在防治暴露于外部硫酸盐污染物时控制膨胀土体积变化的有效性是不知不可知的。物理化学和指数特性为粘土的体积变化行为提供了基本的洞察。因此,该研究提出了外部硫酸盐污染对SRC处理的膨胀土的物理化学和指数性质的影响。将三个SRC含量分别向膨胀土中加入膨胀土中,并用蒸馏水重构并固化1-28天。在所需的固化期后,将SRC处理的膨胀土分别用5000,10,000和20,000ppm重构5000,100,000和20,000ppm的硫酸盐溶液,用于测定性质的1天。实验结果表明,SRC处理从8.75增加到11.95-12.21,随后的硫酸盐污染降低至9.33-11,其中发生硅酸钙水合物的脱钙。此外,硫酸盐污染对SRC处理土壤液体限制的影响可忽略不计,而塑料和收缩率限制在硫酸盐污染时增加。收缩限度的增加归因于在污染10,000-20,000ppm硫酸盐溶液的SRC处理样品中形成eTtringite /甲磺酸盐,而单硫酸盐形成和破坏胶结凝胶的样品中污染5000ppm的样品。通过扫描电子显微镜,能量分散X射线分析和X射线衍射来证明这些形成。

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