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The Effect of Soil Composition and Moisture Content on Dry Density and Hydraulic Conductivity of Clays

机译:土壤成分及水分含量对粘土干密度和水力传导性的影响

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Soil composition and moisture content have significant effects on the resulting bulk density of clayey soils because of the rearrangement of the solid particles and chemical stabilization. In this study, kaolinite and kaolinite with calcium carbonate (KC), silica gel (KS), and both calcium carbonate and silica gel (KSC) were compacted at different moisture contents according to ASTM standards. These mixtures of compacted clays were then subjected to leaching by distilled water, followed by a solution of heavy metals. Experimental results indicate that the dry density and coefficient of hydraulic conductivity are significantly influenced by the soil constituents. Specifically, kaolinite exhibits a low dry density and a high coefficient of permeability when compared to the other soils (KS, KC and KSC). As permeant flow approaches a stationary regime, greater pore volumes of effluents result, and an increase in the coefficient of permeability is observed in all types of soils. Tests confirm that chemical reactions are responsible for permeability increases up to a constant value. Expressly, kaolinite mixtures with silica gel or calcium carbonate exhibit a coefficient of permeability almost one order less than that of kaolinite. Results indicate the importance of silica gel as an additive for the reduction of the permeability in clay soils.
机译:由于固体颗粒的重排和化学稳定性,土壤成分和水分含量对粘土土壤的堆积密度具有显着影响。在该研究中,根据ASTM标准,在不同的水分含量下压实高岭石和具有碳酸钙(KC),硅胶(KS)和碳酸钙和硅胶(KSC)的高岭石和硅胶(KSC)。然后将这些压实粘土的混合物通过蒸馏水进行浸出,然后进行重金属溶液。实验结果表明,液压导电性的干密度和系数受土壤成分的显着影响。具体地,与其他土壤(KS,KC和KSC)相比,高岭石表现出低干密度和高渗透性系数。随着Permeant Flow接近静止的状态,在所有类型的土壤中观察到更大的孔隙产量的污水产量,并且在所有类型的土壤中观察到渗透系数的增加。试验证实,化学反应负责渗透率增加到恒定值。明显地,具有硅胶或碳酸钙的高岭石混合物表现出渗透率的系数几乎比高岭石的尺寸小。结果表明硅胶作为粘土土壤中渗透性降低渗透性的添加剂的重要性。

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