生物医学垃圾焚烧炉灰稳定膨胀土的研究

Asefachew Belete Tseganeh, Henok Fikre Geberegziabher, A. Chala
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引用次数: 3

摘要

膨胀土在湿季和旱季由于循环膨胀和收缩而经历了很大的体积变化。因此,当遇到这种有问题的土壤作为路基材料时,应完全避免或适当处理。在本研究中,提出了生物医学垃圾焚烧炉灰与石灰组合来稳定膨胀土。在天然土上进行粒度分析、阿特伯格极限、自由膨胀、压实、无侧限抗压强度和加州承载比试验,并与3%、5%、7%、9%和11%的生物医学垃圾焚烧炉灰(BWIA)混合。根据自由膨胀试验结果确定了BWIA的最佳掺量。为了进一步研究稳定剂的相对有效性,在最佳土壤- bwia混合料中分别添加2%和3%石灰,并进行了UCS和CBR试验。此外,还对具有代表性的稳定样品进行了扫描电镜(SEM)测试,以检查由于键合而导致的微织物和结构排列的变化。BWIA的加入对膨胀土的各项指标性能和强度都有很好的影响。当掺加2%和3%石灰改性BWIA的最佳掺量时,膨胀土的强度显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stabilization of Expansive Soil Using Biomedical Waste Incinerator Ash
Expansive soils undergo high volume change due to cyclic swelling and shrinkage behavior during the wet and dry seasons. Thus, such problematic soils should be completely avoided or properly treated when encountered as subgrade materials. In the present study, the biomedical waste incinerator ash and lime combination was proposed to stabilize expansive soil. Particle size analysis, Atterberg limits, free-swell, compaction, unconfined compression strength, and California bearing ratio tests were conducted on the natural soil and blended with 3%, 5%, 7%, 9%, and 11% biomedical waste incinerator ash (BWIA). The optimum content of BWIA was determined based on the free-swell test results. To further investigate the relative effectiveness of the stabilizer, 2% and 3% lime were also added to the optimum soil-BWIA mixture and UCS and CBR tests were also conducted. In addition, scanning electron microscopy (SEM) tests for representative stabilized samples were also conducted to examine the changes in microfabrics and structural arrangements due to bonding. The addition of BWIA has a promising effect on the index properties and strength of the expansive soil. The strength of the expansive soil significantly increased when it was blended with the optimum content of BWIA amended by 2% and 3% lime.
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