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Effects of crude oil on water and tracer movement in the unsaturated and saturated zones

机译:原油对非饱和和饱和带水和示踪剂运动的影响

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A tracer test was conducted to aid in the investigation of water movement and solute transport at a crude-oil spill site near Bemidji, Minnesota. Time of travel was measured using breakthrough curves for rhodamine WT and bromide tracers moving from the soil surface through oil-contaminated and oil-free unsaturated zones to the saturated zone. Results indicate that the rates of tracer movement were similar in the oil-free unsaturated and saturated zones compared to the oily zones. These results are somewhat surprising given the oil contamination in the unsaturated and saturated zones. Rhodamine tracer breakthrough in the unsaturated and saturated zones in general was delayed in comparison to bromide tracer breakthrough. Peak tracer concentrations for the lysimeters and wells in the oily zone were much greater than at the corresponding depths in the oil-free zone. Water and tracer movement in the oily zone was complicated by soil hydrophobicity and decreased oil saturations toward the periphery of the oil. Preferential flow resulted in reduced tracer interaction with the soil, adsorption, and dispersion and faster tracer movement in the oily zone than expected. Tracers were freely transported through the oily zone to the water table. Recharge calculations support the idea that the oil does not substantially affect recharge in the oily zone. This is an important result indicating that previous model-based assumptions of decreased recharge beneath the oil were incorrect. Results have important implications for modeling the fate and transport of dissolved contaminants at hydrocarbon spill sites. Published by Elsevier B.V.
机译:进行了示踪剂测试,以帮助调查明尼苏达州贝米吉附近的原油泄漏场的水流和溶质运移。使用若丹明WT和溴化物示踪剂的穿透曲线,从土壤表面经过油污染和无油的不饱和区移动到饱和区,使用传播曲线进行测量。结果表明,与无油区相比,无油不饱和区和饱和区的示踪剂运动速率相似。考虑到不饱和和饱和区的油污染,这些结果有些令人惊讶。与溴化物示踪剂的穿透相比,罗丹明示踪剂在不饱和和饱和区的穿透通常被延迟。油性区的溶渗仪和井的示踪峰浓度远高于无油区相应深度处的示踪剂浓度。油层中的水和示踪剂的运动由于土壤疏水性和向油周边的油饱和度降低而变得复杂。优先流动导致示踪剂与土壤的相互作用,吸附和分散减少,并且示踪剂在油性区域中的运动比预期的要快。示踪剂通过油性区自由运输到地下水位。补给量计算支持这样的想法,即油基本上不会影响油区中的补给。这是一个重要的结果,表明以前基于模型的油下补给减少的假设是不正确的。结果对于模拟碳氢化合物溢漏现场的溶解污染物的结局和运输具有重要意义。由Elsevier B.V.发布

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