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Some Geotechnical Behaviour of Silty Clay Improved with Lime and Nanolime

机译:石灰和纳米石灰改良粉质粘土的一些岩土行为

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Chemical stabilization involves application of chemical admixtures to improve the behaviour of soil. Thus, this study was carried out to validate the effectiveness of nanolime additives as soil stabilizer. Lime and nanolime were chosen as additive to investigate its effect on some geotechnical properties of clayey soil. The soil was mixed with the additives ranging from 0.2 to 1.0% by dry weight of soil. The results indicate that adding a low percentage of nanolime can lead to a noticeable reduction in soil plasticity. It is found that a considerable improvement in soil compaction results was achieved with nanolime compared with lime. Nanolime shows superiority in soil improvement compared with lime even at the dosage of 0.5%. Chemical reactions between the calcium oxides and dissolved silica present in the soil mineral produced calcium silicate hydrate (CSH), where the morphology of this product can be recognized under FESEM test. The results indicate that the stabilization mechanism of treated soil involved flocculation and agglomeration of soil particles by Ca+2 which bridges the negatively charged clay particles The existence of even a minute amount of nanolime can result in extraordinary effects on the engineering properties of soil.
机译:化学稳定作用涉及使用化学外加剂来改善土壤的行为。因此,进行了这项研究以验证纳米石灰添加剂作为土壤稳定剂的有效性。选择石灰和纳米石灰作为添加剂,以研究其对粘土土壤某些岩土性能的影响。将土壤与占土壤干重的0.2-1.0%的添加剂混合。结果表明,添加低百分比的纳米石灰会导致土壤可塑性显着降低。发现与石灰相比,纳米石灰在土壤压实结果上有相当大的改善。与石灰相比,纳米石灰即使在0.5%的用量下也表现出比石灰更好的土壤改良效果。土壤矿物质中存在的氧化钙和溶解的二氧化硅之间的化学反应产生了水合硅酸钙(CSH),在FESEM测试中可以识别出该产品的形态。结果表明,处理过的土壤的稳定机制包括钙离子絮凝和团聚,Ca + 2桥接带负电的粘土颗粒。即使是微量的纳米石灰的存在也会对土壤的工程性能产生极大的影响。

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