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Moisture retention and hydraulic conductivity of coarse-textured soils amended with coal combustion fly ash

机译:用煤燃烧粉煤灰修正的粗糙织地状土壤的水分保留和液压导电性

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Previous studies have suggested that an increase in water holding capacity or matric potential (ψ) may result from the addition of coal combustion fly ash (FA) to coarse-textured soils, but common laboratory techniques for evaluating such characteristics can be time-consuming and difficult to replicate. Therefore, centrifuge-based methods were used to assess the matric potential (ψ) and hydraulic conductivity (K) as a function of the degree of saturation for a coarse-textured surface soil from the Southeastern US that was amended with acidic FA at application rates ranging from 0-15% (wt/wt). In repacked columns, a low ionic strength rainwater surrogate was used as the leaching solution. For comparison, similar amounts of standard clays and sand (i.e., kaolinite (KA); montmorillonite (MONT); and ottawa sand (OS)) were added to the test soil to demonstrate the sensitivity of the centrifuge-based methods. The water dispersible clay (WDC) content, an indicator of the susceptibility of the soil clay to dispersion, was also evaluated for the amended soils. A minor increase in matric potential was observed only at the highest FA application rates, while saturated K (K_(sat)) actually increased and then leveled off with increasing FA addition. In contrast, the matric potential and K for the other tested amendments was altered in the expected manner. KA and MONT decreased HC and increased matric potential at a given moisture content, while OS addition increased the soil HC and decreased the water holding capacity. Consistent respective trends were also evident in the particle size analyses of the amended soil. The seemingly inconsistent behavior observed for the FA amended columns may reflect changes in pore-water composition resulting from soluble FA components that increased the background ionic strength of the soil solution for the readily dispersive surface soil, as column effluents were generally less turbid with increasing FA addition. Changes observed in WDC for the various amendments support such a mechanism as the dispersible clay decreased and the ionic strength increased significantly for the FA amended soils.
机译:以前的研究表明,水持能力或最高型液体潜力(Ⅵ)的增加可能是由加入煤燃烧粉煤灰(FA)到粗糙纹理的土壤,但用于评估这些特性的常见实验室技术可能是耗时的难以复制。因此,基于离心的方法用于评估Matric电位(ψ)和液压导电性(k),作为粗糙织地用表面土壤的饱和度从申请率的酸性FA修正的粗糙纹理表面土壤的函数范围从0-15%(WT / WT)。在重新包装的柱中,使用低离子强度雨水替代物作为浸出溶液。为了比较,类似量的标准粘土和沙子(即高岭石(Kaolinite(Ka);蒙脱石(Mont);和渥太华砂(OS))加入到试验土中,以证明基于离心的方法的敏感性。还评价了修正的土壤的水分散粘土(WDC)含量,土壤粘土对分散的敏感性的指示。仅以最高的FA申请率观察到Matric电位的微小增加,而饱和K(K_(SAT))实际上增加,然后随着CA增加的增加而平衡。相反,以预期的方式改变了其他测试修正的Matric电位和K. Ka和Mont在给定的水分含量下降低HC和增加的原始潜力,而OS添加增加土壤HC并降低水持续容量。在修正的土壤的粒度分析中也是明显的一致各个趋势。对于FA修正的柱观察到的看似不一致的行为可能反映由可溶性FA组分产生的孔隙水组合物的变化,该孔 - 水合成分增加了易于分散表面土壤的土壤溶液的背景离子强度,因为柱流出物通常不那么浑浊,增加FA添加。 WDC在WDC中观察到各种修正案的变化支持这种机制,因为可分散的粘土降低,对FA修正的土壤有显着增加。

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