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Long-term reactive transport modelling of stabilized/solidified waste: from dynamic leaching tests to disposal scenarios

机译:稳定/固化废物的长期反应性运输模型:从动态浸出测试到处置方案

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Environmental impact assessment of hazardous waste disposal relies, among others, on standardized leaching tests characterized by a strong coupling between diffusion and chemical processes. In that respect, this study shows that reactive transport modelling is a useful tool to extrapolate laboratory results to site conditions characterized by lower solution/solid (L/S) ratios, site specific geometry, infiltration, etc. A cement solidified/stabilized (S/S) waste containing lead is investigated as a typical example. The reactive transport model developed in a previous study to simulate the initial state of the waste as well as laboratory batch and dynamic tests is first summarized. Using the same numerical code (HYTEC), this model is then integrated to a simplified waste disposal scenario assuming a defective cover and rain water infiltration. The coupled evolution of the S/S waste chemistry and the pollutant plume migration are modelled assessing the importance of the cracking state of the monolithic waste. The studied configurations correspond to an undamaged and fully sealed system, a few main fractures between undamaged monoliths and, finally, a dense crack-network in the monoliths. The model considers the potential effects of cracking, first the increase of rain water and carbon dioxide infiltration and, secondly, the increase of L/S ratio and reactive surfaces, using either explicit fracture representation or dual porosity approaches.
机译:危险废物处置的环境影响评估尤其依赖于标准的浸出测试,其特征在于扩散和化学过程之间的紧密耦合。在这方面,这项研究表明反应性传输模型是将实验室结果外推到以较低的固/液比(L / S),特定部位的几何形状,渗透等为特征的现场条件的有用工具。固化/稳定的水泥(S / S)含铅废物为典型实例。首先总结了先前研究中开发的反应性运输模型,以模拟废物的初始状态以及实验室分批和动态测试。然后,使用相同的数字代码(HYTEC),将该模型集成到简化的废物处理方案中,假设覆盖物有缺陷并且雨水渗入。 S / S废物化学与污染物羽流迁移的耦合演化被建模,以评估整体式废物裂解状态的重要性。所研究的构造对应于未损坏且完全密封的系统,未损坏的整体结构之间的一些主要裂缝,以及最后在整体结构中的致密裂纹网络。该模型考虑了开裂的潜在影响,首先是使用明确的裂缝表示方法或双重孔隙度方法来考虑雨水和二氧化碳渗透的增加,其次是L / S比和反应性表面的增加。

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