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Modeling of coupled mass transport and chemical equilibrium in cement-solidified soil contaminated with heavy-metal ions

机译:重金属离子污染的水泥固化土壤中的传质耦合与化学平衡耦合模型

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The purpose of this research is to simulate and predict the stabilization and leaching process of hexava-lent chromium from cement-solidified soil. An existing analytical system named DuCOM, which principally deals with cementitious materials, is expanded to be applied to soil materials in the present study. First, the mass-conservation equation of chromium is formulated and added to the existing system. In order to obtain the solid-liquid equilibrium, the chromium binding capacity of cement hydrates is experimentally identified with different ratios of chromium concentration to cement hydrates amount. Subsequently, tank leaching tests performed in previous studies are simulated according to the proposed analytical model for verification. The leaching amounts of chromium from cement-solidified soil are calculated. The results show that the tank leaching test can be reasonably simulated under various conditions, such as chromium content, cement content, curing time and specimen size. Also, the applicability of the proposed model for several meter and kilometer scale is confirmed. Furthermore, by coupling the system to geochemical calculations, the effects of different redox conditions of soils are studied and discussed.
机译:本研究的目的是模拟和预测水泥固化土中六价铬的稳定化和浸出过程。现有的名为DuCOM的分析系统(主要处理胶结材料)已得到扩展,可以在本研究中应用于土壤材料。首先,制定铬的质量守恒方程,并将其添加到现有系统中。为了获得固液平衡,通过铬浓度与水泥水合物含量的不同比率,实验确定了水泥水合物的铬结合能力。随后,根据提出的分析模型对先前研究中进行的储罐浸出试验进行了仿真,以进行验证。计算了水泥固化土中铬的浸出量。结果表明,可以在铬含量,水泥含量,固化时间和试样尺寸等各种条件下合理模拟罐浸试验。同样,该模型在几米和几千米的规模上也适用。此外,通过将该系统与地球化学计算相结合,研究和讨论了土壤不同氧化还原条件的影响。

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