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Influence of Particle Morphology on the Hydraulic Behavior of Coal Ash and Sand

机译:颗粒形态对粉煤灰和砂水力学行为的影响

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Flexible-wall hydraulic conductivity tests were carried out on bottom ash, fly ash and compacted specimens of sand with additions of 0, 3, 6, 9 and 18% of bentonite. In order to study the effect of bentonite inclusion and particle morphology on the hydraulic conductivity of the admixtures, an investigation was undertaken based on thin section micrographs. It was found that, for both bottom and fly ash admixtures, bentonite addition reduced only one order of magnitude the hydraulic conductivity, from 1.78 × 10−6 m/s to 1.39 × 10−7 m/s. On the other hand, the sand hydraulic conductivity was reduced five orders of magnitude, from 3.17 × 10−5 m/s to 5.15 × 10−10 m/s. Among several factors that can be responsible for the difficulty in reducing hydraulic conductivity, such as ash grain size distribution and elevated cation concentration (leached from the ash) in pore water, it can also be recalled the high particle voids observed in the ash by means of microscopic analysis. The same is not true with the sand, which has solid particles, without inner voids.
机译:在底灰,粉煤灰和压实的砂土试样上进行了柔性壁水力传导性测试,添加了0、3、6、9和18%的膨润土。为了研究膨润土的夹杂物和颗粒形态对混合物的水力传导率的影响,基于薄层显微照片进行了研究。结果发现,对于底灰和粉煤灰掺混料,膨润土的添加仅使水力传导率降低一个数量级,从1.78×10 -6 m / s降至1.39×10 −7 m / s。另一方面,砂的水力传导率从3.17×10 -5 m / s降低到5.15×10 -10 m / s 5个数量级。在可能导致降低水力传导率困难的几个因素中,例如灰分粒径分布和孔隙水中阳离子浓度的升高(从灰分中滤出),还可以回想起灰分中观察到的高颗粒空隙微观分析。对于具有固体颗粒且没有内部空隙的沙子,情况却并非如此。

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