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Surface complexation model for the heavy metal adsorption on natural sediment

机译:天然沉积物上重金属吸附的表面络合模型

摘要

Surface complexation models (SCMs) have been successfully used to describe metal ion adsorption on pure mineral materials. However, such models have rarely been applied to model adsorption on natural materials. In this study, the surface complexation model approach was used to describe the surface properties and adsorption behavior of natural aquatic sediment. Three typical versions of the surface complexation model were used: constant capacitance model (CCM), diffuse layer model (DLM), and triple layer model (TLM). All the model parameters were determined on the basis of the experimental data of the potentiometric titration and the metal adsorption isotherm using LeAn River (China) sediment. The experimental data of the adsorption edges were used to verify the performance of the models. This work indicated that all three models can simulate the experimental results very well. In predicting the adsorption behavior of the sediment sample, the relative errors of these three models were quite close. The results illustrate that SCMs can be used to successfully model natural materials.
机译:表面络合模型(SCM)已成功用于描述金属离子在纯矿物材料上的吸附。但是,这种模型很少用于模拟天然材料上的吸附。在这项研究中,使用表面络合模型方法来描述天然水生沉积物的表面性质和吸附行为。使用了表面络合模型的三种典型版本:恒定电容模型(CCM),扩散层模型(DLM)和三层模型(TLM)。所有模型参数都是根据电位滴定和利用利安河(中国)沉积物的金属吸附等温线的实验数据确定的。吸附边缘的实验数据用于验证模型的性能。这项工作表明,这三个模型都可以很好地模拟实验结果。在预测沉积物样品的吸附行为时,这三个模型的相对误差非常接近。结果表明,SCM可用于成功建模天然材料。

著录项

  • 作者

    Wen XH; Du Q; Tang HX;

  • 作者单位
  • 年度 1998
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