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The combined effect of wood ash and lime on the engineering properties of expansive soils

机译:木灰和石灰对膨胀土工程特性的综合影响

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This work assessed the combined effect of wood ash a waste product from a bread bakery and lime (calcium oxide) on the geotechnical properties of expansive soils collected from Awgu (southeastern Nigeria). The mineralogical composition of the soil and chemical composition of the wood ash were analyzed using X-ray diffraction and X-ray fluorescence method, respectively. The geotechnical properties of the soil such as grain size distribution, consistency limits, free swell potential, compaction, and unconfined compressive strength of the natural soil and that of the soil with varying proportion of wood ash and lime was also examined. The results revealed that the natural soil which is classified as highly plastic inorganic soil, on addition of wood ash and lime in the optimum proportion of 78%-18%-4% by weight of soil-wood ash-lime admixture showed reduction in the plasticity index and linear shrinkage, thus improving the workability of the natural soil. There was also reduction in the free swell potential of the natural soil, improvement in the compaction properties of the natural soil, and increase in the shear strength value of the natural soil which drastically improved more after 28 days of curing. It was therefore concluded that high plastic inorganic soils can successfully be stabilized for use in pavement construction with the combined effect of wood ash and lime, which will not only reduce the cost of carrying out engineering projects, but also reduces the environmental problems associated with indiscriminate disposal of wood ash.
机译:这项工作评估了面包店的废渣木灰和石灰(氧化钙)对从Awgu(尼日利亚东南部)收集的膨胀土壤的岩土特性的综合影响。使用X射线衍射和X射线荧光法分别分析了土壤的矿物学组成和木灰的化学组成。还检查了土壤的土工特性,例如粒度分布,稠度极限,自由膨胀势,压实度以及天然土壤以及具有不同木灰和石灰比例的土壤的无侧限抗压强度。结果表明,被归类为高塑性无机土壤的天然土壤中,以木灰和石灰石灰混合料的最佳重量比添加78%-18%-4%的木灰和石灰后,土壤中的减少了。可塑性指数和线性收缩率,从而提高了天然土壤的可加工性。天然土壤的自由膨胀潜能也降低了,天然土壤的压实特性得到了改善,天然土壤的抗剪强度值提高了,固化28天后,其抗张强度大大提高了。因此得出的结论是,高可塑性无机土可以成功地稳定在路面施工中,并具有木灰和石灰的综合作用,这不仅会减少工程项目的成本,而且还减少了乱乱进行的环境问题处置木灰。

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