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Spatial and temporal variability of water repellency in a sandy soil contaminated with tar oil and heavy metals

机译:沥青油和重金属污染的沙质土壤中疏水性的时空变化

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Water repellency can induce preferential flow and thus affect water flow and contaminant transport at hazardous waste sites. Since the spatial patterns of water repellency are mostly unknown, it is problematic to use numerical transport models to predict leachate composition. In this study, the spatial variability of soil water repellency was studied at an industrial site contaminated with tar oil, chromium, copper and arsenic. The persistence of water repellency was assessed by the water drop penetration time (WDPT), and the degree of water repellency was quantified by the ethanol percentage (EP) test. Measurements were made at the soil surface along 3.5-12.1 m long transects at different times between March and October 2002. The spatial variability of WDPT, EP, water content, and organic matter content was quantified by variogram analyses. Both the persistence and the degree of water repellency varied seasonally, with the highest water repellency during the summer months. The correlation lengths of WDPT values ranged between 16 and 406 cm, whereas EP values showed no spatial correlation. For field-moist samples, a critical soil water threshold, below which water repellency prevails, was estimated to be 2.5-4%. For oven dry samples, the WDPT values were dependent on the water content prior to drying. The wide range of correlation lengths and the temporal dynamics of spatial repellency patterns suggest that simulations of solute leaching must consider the spatial and temporal variability of soil hydrophobic properties.
机译:疏水性可引起优先流动,从而影响危险废物现场的水流和污染物运输。由于疏水性的空间模式几乎是未知的,因此使用数值传输模型来预测渗滤液组成是有问题的。在这项研究中,研究了在被焦油,铬,铜和砷污染的工业现场土壤疏水性的空间变异性。通过水滴渗透时间(WDPT)评估拒水性的持久性,并通过乙醇百分比(EP)测试量化拒水性的程度。在2002年3月至2002年10月的不同时间,在3.5-12.1 m长的样带上对土壤表面进行了测量。WDPT,EP,水分和有机质含量的空间变异性通过方差分析进行了量化。拒水性的持久性和程度均随季节而变化,夏季的拒水性最高。 WDPT值的相关长度在16到406 cm之间,而EP值没有显示空间相关性。对于田间潮湿的样品,估计的临界土壤水分阈值为2.5-4%,低于该阈值则具有拒水性。对于烤箱干燥的样品,WDPT值取决于干燥之前的水分含量。相关长度的广泛范围和空间排斥模式的时间动态表明,溶质淋洗的模拟必须考虑土壤疏水性的时空变化。

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