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Effect of humic matter on metal adsorption onto clay materials: Testing the linear additive model

机译:腐殖质对金属在粘土材料上吸附的影响:测试线性添加剂模型

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Migration of contaminants with low affinity for the aqueous phase is essentially governed by interaction with mobile carriers such as humic colloids. Their impact is, however, not sufficiently described by interaction constants alone since the humic carriers themselves are subject to a solid-liquid distribution that depends on geochemical parameters.rnIn our study, co-adsorption of the REE terbium (as an analogue of trivalent actinides) and humic acid onto three clay materials (illite, montmorillonite, Opalinus clay) was investigated as a function of pH. ~(160)Tb(III) and ~(131)I-labelled humic acid were employed as radiotracers, allowing experiments at very low concentrations to mimic probable conditions in the far-field of a nuclear waste repository. Humate complexation of Tb was examined by anion and cation exchange techniques, also considering competitive effects of metals leached from the clay materials. The results revealed that desorption of metals from clay barriers, occurring in consequence of acidification processes, is generally counteracted in the presence of humic matter. For all clay materials under study, adsorption of Tb was found to be enhanced in neutral and acidic systems with humic acid, which is explained by additional adsorption of humic-bound Tb. A commonly used composite approach (linear additive model) was tested for suitability in reconstructing the solid-liquid distribution of Tb in ternary systems (Tb/humic acid/clay) on the basis of data determined for binary subsystems. The model can qualitatively explain the influence of humic acid as a function of pH, but it failed to reproduce our experimental data quantitatively. It appears that the elementary processes (metal adsorption, metal-humate complexation, humic acid adsorption) cannot be considered to be independent of each other. Possible reasons are discussed.
机译:对水相的亲和力低的污染物的迁移基本上是通过与诸如腐殖质胶体之类的移动载体相互作用来控制的。但是,仅靠相互作用常数不能充分描述它们的影响,因为腐殖质载体本身的固液分布取决于地球化学参数。在我们的研究中,稀土元素co的共吸附(作为三价act系元素的类似物) )和腐殖酸在三种粘土材料(伊利石,蒙脱土,蛋白石粘土)上的变化与pH的关系。 〜(160)Tb(III)和〜(131)I标记的腐殖酸被用作放射性示踪剂,从而允许在非常低的浓度下进行实验,以模拟核废料储存库远场中的可能条件。 Tb的腐殖酸盐络合物通过阴离子和阳离子交换技术进行了研究,还考虑了从粘土材料中浸出的金属的竞争作用。结果表明,在存在腐殖质的情况下,通常会抵消由于酸化过程而导致的金属从粘土屏障中的脱附。对于所有正在研究的粘土材料,在腐殖酸的中性和酸性体系中,Tb的吸附均得到增强,这可以通过与腐殖质结合的Tb的额外吸附来解释。测试了一种常用的复合方法(线性累加模型),该方法基于为二元子系统确定的数据,适用于在三元系统(Tb /腐殖酸/粘土)中重建Tb的固液分布。该模型可以定性地解释腐殖酸作为pH的函数的影响,但未能定量地再现我们的实验数据。看来基本过程(金属吸附,金属-腐殖酸盐络合,腐殖酸吸附)不能被认为是相互独立的。讨论了可能的原因。

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