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Migration of volatile organic contaminations (VOCs) through a deforming clay liner

机译:挥发性有机污染物(VOC)通过变形的粘土衬里的迁移

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摘要

A fully coupled thermal-hydraulic-mechanical-chemical (THMC) model was proposed to describe the migration of volatile organic contaminations (VOCs) in unsaturated landfill liners. The vertical soil stress, capillary pressure, air pressure, temperature increase, and solute concentration were selected as the primary variables. Finite deformations were described using Lagrangian coordinates. Non-isothermal moisture transport was found to be dependent on both the temperature gradient and the concentration of the VOCs. The VOCs were assumed to exist and be transported in three phases in the soil: solid, liquid, and gas. An illustrative example of an unsaturated landfill with a compacted clay liner was presented. For the case considered, the transport of gas phase VOCs was found to dominate the migration progress. Moreover, the temperature gradient can accelerate the breakthrough of VOCs in an unsaturated liner, while the mechanical consolidation slowed down the motion of the VOCs.
机译:提出了一种完全耦合的热-液压-机械-化学(THMC)模型来描述非饱和垃圾填埋场衬里中挥发性有机污染物(VOC)的迁移。选择垂直土壤应力,毛细压力,空气压力,温度升高和溶质浓度作为主要变量。使用拉格朗日坐标描述了有限变形。发现非等温湿气传输既取决于温度梯度,也取决于VOC的浓度。挥发性有机化合物被假定存在并在土壤中分三个阶段运输:固体,液体和气体。提出了具有压实的粘土衬里的不饱和垃圾填埋场的说明性示例。就所考虑的情况而言,发现气相VOC的运输主导了迁移进程。此外,温度梯度可以加速VOC在不饱和衬里中的渗透,而机械固结减缓了VOC的运动。

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