首页> 外文期刊>International Journal of Sustainable Construction Engineering and Technology >Local Nanostructured Ashes Synthesized by Incineration, Pulverization and Spectrophotometric Characterization of Solid Wastes Ashes for Use as Admixtures in Soil Stabilization
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Local Nanostructured Ashes Synthesized by Incineration, Pulverization and Spectrophotometric Characterization of Solid Wastes Ashes for Use as Admixtures in Soil Stabilization

机译:通过焚化,粉碎和分光光度法表征固体废物灰分作为土壤稳定剂的混合物,合成了局部纳米结构灰分

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Nanostructured ash materials were locally synthesized by the spectrophotometric characterization method and applied in the stabilization of lateritic soils to evaluate the effect of the ashes on the strength properties of the lateritic soil. The ashes are products of the incineration and complete pulverization of some selected biodegerable solid waste materials. Results showed that the ashes were nanomaterials by size, reactive surface, absorbance and texture. And the studied soil was found to be an A-2-7 soil, according to AASHTO classification method. These ash materials were mixed with the soil in varying proportions of 3%, 6%, 9%, 12% and 15% by weight of dry soil and their respective effects on the soil evaluated. The California bearing ratio and unconfined compressive strength results improved remarkably. The results showed that the ash materials are good admixtures in the stabilization of lateritic soils in pavement sub-grade and sub-base construction and other civil engineering works. These materials are secured free of cost and by implication reduced the cost of stabilizing the lateritic soils hence a cost effective stabilization was achieved.
机译:通过分光光度法表征纳米结构的灰分材料,并将其用于红土的稳定化,以评估灰分对红土强度特性的影响。灰烬是一些选定的可生物降解的固体废物焚化和完全粉碎的产物。结果表明,骨灰在尺寸,反应性表面,吸光度和质地方面均为纳米材料。根据AASHTO分类法,发现被研究土壤为A-2-7土壤。将这些灰分材料以3%,6%,9%,12%和15%(按干土壤重量计)的不同比例与土壤混合,并评估它们各自对土壤的影响。加利福尼亚的承载比和无限制的抗压强度结果显着改善。结果表明,灰分材料在路面基层和基层施工以及其他土木工程中是稳定红土土壤的良好混合物。这些材料是免费的,并且通过隐含的方式降低了稳定红土的成本,因此实现了具有成本效益的稳定化。

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