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On the Recent Trends in Expansive Soil Stabilization Using Calcium-Based Stabilizer Materials (CSMs): A Comprehensive Review

机译:基于钙稳定剂材料(CSMS)近期膨胀土壤稳定趋势:全面审查

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Calcium-based stabilizer materials (CSMs) exhibit pozzolanic properties which improve the properties of clayey soils by hydration, cation exchange, flocculation, pozzolanic reaction, and carbonation. In this comprehensive review, comprising over past three decades from 1990 to 2019, a mechanistic literature of expansive soil stabilization by incorporating CSMs is presented by reviewing 183 published research articles. The advantages and disadvantages of CSMs as the ground stabilizing agent are succinctly presented, and the major outcomes of physicochemical effects on soil properties are discussed in detail. After blending with CSM, the main and interaction effects on soil properties with focus on chemical processes such as X-ray fluorescence, X-ray diffraction analyses, and microstructure interaction by using scanning electron microscopy and thermogravimetric analysis have been reviewed in light of findings of past researchers. This work will help geotechnical engineers to opt for suitable CSM in the field of geoenvironmental engineering in committing to sustainable construction of civil engineering structures over expansive soils.
机译:基于钙的稳定剂材料(CSMS)表现出Pozzolanic属性,其通过水合,阳离子交换,絮凝,碳化反应和碳化改善粘土土壤的性质。在这一全面审查中,在1990年至2019年的过去三十年中,通过审查了183名已发表的研究文章,提出了通过纳入CSMS的膨胀土壤稳定机制的机制文献。 CSMS作为地面稳定剂的优点和缺点简洁地呈现,详细讨论了物理化学作用对土壤性质的主要结果。用CSM混合后,通过使用扫描电子显微镜和热重分析,对诸如X射线荧光,X射线衍射分析等化学过程的土壤性能的主要和相互作用作用进行了扫描过去的研究人员。这项工作将有助于岩土工程师选择在膨胀土壤中的土木工程结构的可持续建设方面选择合适的CSM。

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