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Utilize Xanthan gum for enhancing CBR value of used cooking oil‑contaminated fine sand subgrade soil for pavement structures

机译:利用黄原胶用于增强用于路面结构的烹饪油污细砂路基土壤的CBR值

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Used Cooking Oil (UCO) that mixes with soils can weaken its engineering properties. This paper investigates stabilizing UCO-contaminated fine sand natural soil to be used as subgrade layer in road pavement structures. Xanthan gum is utilized as the stabilizing material. Stabilization is evaluated in terms of the soil's California Bearing Ratio (CBR). It is found that the increase in Xanthan gum content (Xc) enhances the CBR value of UCO-contaminated fine sand soils. Generally, results indicated that at any Xc value between 0.1 and 0.9%, UCO-contaminated fine sand soil samples with lower CC values have higher CBR. The effective content of Xanthan gum powder to enhance the soil's CBR value is found to be 0.4%. Considering Xcof 0.4% and UCO contamination content (CC) of 0.2%, it is indicated that the soil's CBR value increases by 304% and 149.4% of the CBR value of natural sand soil and UCO-contaminated sand soil in order. In addition, Xc of 0.9% updates the unconfined compressive strength to 10.1 kPa and 7.6 kPa for soil samples with CC = 2% and 8%, respectively. Durability study shows that wet and dry cycles decrease the CBR of fine sand stabilized soil. The trend of CBR reduction in wet cycles is higher than that of dry cycles. Economically, stabilizing UCO-contaminated fine sand soil reduces the required pavement thickness by about 11.3%. On the other hand, the paper introduces a contour map and general mathematical model to estimate the CBR value of in terms of Xc and CC.
机译:使用与土壤混合的食用油(UCO)可以削弱其工程性质。本文研究了稳定的UCO污染的细砂天然土壤,以便在道路路面结构中用作路基层。黄原胶用作稳定材料。在土壤的加州轴承比(CBR)方面评估稳定化。结果发现,黄原胶含量(XC)的增加增强了UCO污染的细砂土壤的CBR值。通常,结果表明,在0.1至0.9%之间的任何XC值之间,具有较低CC值的UCO污染的细砂土壤样品具有较高的CBR。黄原胶粉的有效含量增强土壤的CBR值,发现为0.4%。考虑到XCOF 0.4%和UCO污染含量(CC)为0.2%,结果表明土壤的CBR值增加了304%和149.4%的天然砂土和UCO污染的砂土的CBR值。此外,0.9%的XC将不凝固的压缩强度更新为10.1kPa和7.6kPa,分别具有CC = 2%和8%的土壤样品。耐久性研究表明,湿和干燥循环降低了细砂稳定土壤的CBR。湿循环降低的CBR趋势高于干循环的趋势。经济上,稳定UCO污染的细砂土壤将所需的路面厚度降低约11.3%。另一方面,本文介绍了一种轮廓图和一般数学模型,以估算XC和CC方面的CBR值。

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