A Comparative Study on the Stabilization of Soft Soil Using Agricultural Wastes (Baggase Ash (BA) And Rice Husk Ash (RHA)

Azunna Chukwuma Vincent, C. Ikebude
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Abstract

Soft soils are expansive soils, also referred to as tropical clay. Soft soil may cause instability to foundations thereby reducing their service life, this necessitates the adoption of a suitable soil stabilization method in order to improve the engineering properties of soft soils. This research work aims at comparing the strength properties of soft soil stabilized using two different agricultural wastes- Bagasse Ash (BA) and Rice Husk Ash (RHA). The studies were conducted to determine the properties of the natural and treated soft soils, the oxide composition of BA and RHA and the evaluation of the effect of BA and RHA (0, 2, 4, 6, 8, 10 and 12 % by dry weight of the soil) on the index and strength properties of soft soil, the determination of strength characteristics (proctor compaction , unconfined compressive strength (UCS), and California bearing ratio, (CBR) under soaked and unsoaked conditions) of soft soil with BA and RHA mixtures, the optimum blend of both BA and RHA needed for the stabilization of clay soil, the comparison of BA and RHA as stabilizing agents on the performance of clay soil. From the test results, it was observed of the natural moisture content of the clay soil was to be 18.02%, indicating that the soil material is a relatively high water holding material with very low porosity and specific gravities of 2.66. The maximum dry density (MDD) of BA treated soil increased with higher BA content to an optimum BA content lying between 8-10% of dry clay soil and MDD of RHA treated soil continuously decreased with addition of RHA to the clay soil. OMC of BA and RHA treated soils continuously increase, the BA treated clay soil increase with increase in BA content with a possible percentage increment of 11.20% and RHA treated clay soil increases continuously with addition of RHA to a percentage increment of 16.2%. BA content leads to a consequent increase in CBR to an optimum value of 9%. The optimum value of RHA content was obtained as 10% with a maximum CBR value of 28.72%. BA treated clay soil increase both CBR and UCS to percentage increment change of 630% and 91.41% respectively while percentage increments of 619.8% and 85.23% were recorded for RHA treated clay soil. BA thus improved the strength properties better in comparison to RHA although in smaller optimum percentage addition.
农业废弃物(baggasash, BA)和稻壳灰(RHA)稳定软土的比较研究
软土是膨胀土,也被称为热带粘土。软土会引起地基失稳,从而降低地基的使用寿命,因此需要采用合适的土体稳定方法来改善软土的工程性能。本研究旨在比较蔗渣灰(BA)和稻壳灰(RHA)两种不同农业废弃物稳定软土的强度特性。研究确定了天然软土和处理软土的性质,BA和RHA的氧化物组成,评价了BA和RHA(0、2、4、6、8、10和12%的土壤干重)对软土指标和强度特性的影响,确定了强度特性(普罗克特压实、无侧限抗压强度(UCS)和加州承载比)。(CBR)在浸水和未浸水条件下使用BA和RHA混合剂,BA和RHA稳定粘土所需的最佳混合剂,BA和RHA作为稳定剂对粘土性能的比较。由试验结果可知,粘土的天然含水率为18.02%,说明该土材料为孔隙率极低、比重为2.66的较高持水材料。BA处理土壤的最大干密度(MDD)随BA含量的增加而增加,BA含量在干粘土的8 ~ 10%之间为最佳,而RHA处理土壤的最大干密度(MDD)随RHA添加量的增加而不断降低。BA和RHA处理土壤的OMC持续增加,BA处理的粘土随着BA含量的增加而增加,增幅可能达到11.20%,RHA处理的粘土随着RHA添加量的增加而持续增加,增幅为16.2%。BA的添加导致CBR的最优值为9%。RHA含量的最佳值为10%,CBR最大值为28.72%。BA处理的土壤CBR和UCS分别增加了630%和91.41%,RHA处理的土壤CBR和UCS分别增加了619.8%和85.23%。因此,尽管BA的最佳添加比例较小,但与RHA相比,BA的强度性能得到了更好的改善。
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