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Residual saturation of LNAPLs in subsurface saturated zone

机译:地下饱和带中LNAPL的残留饱和度

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Laboratory-scale experiments were conducted to investigate the residual saturation of light non-aqueous phase liquids (LNAPLs) in subsurface saturated zone, which could be caused by water table fluctuation. The results show that the residual saturation of diesel in saturated zone is distinctively greater than the value in unsaturated zone, and this characteristic can be used to remove more contaminants effectively by lowering down water table and making part of residual contaminants changed into free-phase status. Contrary to the feature in unsaturated zone, where residual saturation of LNAPLs will increase with decreasing of grain size, this investigation showes that residual saturation of diesel in saturated zone decreased with decreasing of glassbeads size. In addition, the influence of water table fluctuation velocity on residual diesel saturation in saturated zone is negligible.
机译:进行了实验室规模的实验,以研究地下饱和区中轻质非水相液体(LNAPL)的残留饱和度,这可能是由于地下水位波动引起的。结果表明,饱和区的柴油残留饱和度明显大于非饱和区的残留饱和度,通过降低地下水位并使部分残留污染物变为自由相状态,该特性可有效去除更多污染物。 。与不饱和区的特征相反,在不饱和区中,LNAPLs的残余饱和度将随着晶粒尺寸的减小而增加,这项研究表明,饱和区中柴油的残余饱和度随玻璃珠尺寸的减小而减小。此外,地下水位波动速度对饱和区残余柴油饱和度的影响可以忽略不计。

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