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Compacted artificially cemented soil-acid leachate contaminant interactions: Breakthrough curves and transport parameters

机译:压实的人工胶结的土壤-酸性渗滤液污染物相互作用:突破曲线和传输参数

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摘要

The transport of contaminants through compacted artificially cemented soil subjected to acid leachate contaminant percolation was analyzed by means of laboratory column tests. The effect of cement content, degree of acidity and hydraulic gradient were evaluated after permeation of several pore volumes of acid leachate contaminant flow through the soil. The pH, electric conductivity and solute breakthrough curves were considered throughout the study. The results showed that the increase of cement content increases the solute pore volumes needed before breakthrough occurred. An increase of the degree of acidity of the percolate and of the hydraulic gradient cause a reduction in the pore volumes needed before breakthrough occurred. The larger the soil cement content, the longer the time required to reach maximum effluent solute concentration. The hydraulic conductivity slightly increased due to cement addition and reduced with increasing degree of acidity of the percolate. Finally, it is possible to state that cement addition to the soil was responsible for increasing retardation coefficient (R) and distribution coefficient (k_d) values, meaning that the artificially cemented soils have higher capability to retard the propagation of the contamination and amplified affinity with dissolved acid contaminant.
机译:通过实验室柱测试分析了污染物在经过酸渗滤液污染物渗滤的压实人工胶结土壤中的污染物传输。在渗入土壤的酸性渗滤液污染物流过多个孔隙后,评估了水泥含量,酸度和水力梯度的影响。在整个研究过程中都考虑了pH值,电导率和溶质穿透曲线。结果表明,水泥含量的增加增加了突破发生前所需的溶质孔体积。渗滤液的酸度和水力梯度的增加导致在发生渗透之前所需的孔体积减少。土壤水泥含量越大,达到最大废水溶质浓度所需的时间越长。由于水泥的添加,水力传导率略有增加,并且随着渗滤液酸度的增加而降低。最后,可以指出,向土壤中添加水泥是增加延迟系数(R)和分布系数(k_d)值的原因,这意味着人工水泥化的土壤具有更高的抑制污染物传播和增强亲和力的能力。溶解的酸性污染物。

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