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Physical and Compaction Behaviour of Clay Soil-Fly Ash Mixtures

机译:粘土粉煤灰混合料的物理和压实特性

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At present, nearly 100 million tonnes of fly ash is being generated annually in India posing serious health and environmental problems. To control these problems, the most commonly used method is addition of fly ash as a stabilizing agent usually used in combination with soils. In the present study, high-calcium (ASTM Class C-Neyveli fly) and low-calcium (ASTM Class F-Badarpur fly ash) fly ashes in different proportions by weight (10, 20, 40, 60 and 80 %) were added to a highly expansive soil [known as black cotton (BC) soil] from India. Laboratory tests involved determination of physical properties, compaction characteristics and swell potential. The test results show that the consistency limits, compaction characteristics and swelling potential of expansive soil-fly ash mixtures are significantly modified and improved. It is seen that 40 % fly ash content is the optimum quantity to improve the plasticity characteristics of BC soil. The fly ashes exhibit low dry unit weight compared to BC soil. With the addition of fly ash to BC soil the maximum dry unit weight (γ_(dmax)) of the soil-fly ash mixtures decreases with increase in optimum moisture content (OMC), which can be mainly attributed to the improvement in gradation of the fly ash. It is also observed that 10 % of Neyveli fly ash is the optimum amount required to minimize the swell potential compared to 40 % of Badarpur fly ash. Therefore, the main objective of the study was to study the effect of fly ashes on the physical, compaction, and swelling potential of BC soils, and bulk utilization of industrial waste by-product without adversely affecting the environment.
机译:目前,印度每年产生近1亿吨粉煤灰,构成严重的健康和环境问题。为了控制这些问题,最常用的方法是添加粉煤灰作为稳定剂,通常与土壤结合使用。在本研究中,以不同的重量比例(10%,20%,40%,60%和80%)添加了高钙(ASTM C-Neyveli粉煤灰)和低钙(ASTM F-Badarpur粉煤灰)粉煤灰。到印度的高度膨胀土壤(称为黑棉(BC)土壤)。实验室测试涉及确定物理性质,压实特性和膨胀潜力。试验结果表明,膨胀土粉煤灰混合物的稠度极限,压实特性和溶胀潜能得到了显着改善和改善。可以看出,粉煤灰含量为40%是改善BC土壤可塑性特性的最佳量。与BC土壤相比,粉煤灰的单位干重低。向BC土壤中添加粉煤灰后,土壤-粉煤灰混合物的最大干重(γ_(dmax))随着最佳水分含量(OMC)的增加而降低,这主要归因于粉煤灰的级配改善。粉煤灰。还观察到,与40%的Badarpur粉煤灰相比,10%的Neyveli粉煤灰是使膨胀潜力最小化所需的最佳量。因此,研究的主要目的是研究粉煤灰对不列颠哥伦比亚省土壤的物理,压实和溶胀潜力的影响,以及工业废物副产物的大量利用,而不会对环境造成不利影响。

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