首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Interaction of bentonite colloids with Cs, Eu, Th and U in presence of humic acid: A flow field-flow fractionation study
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Interaction of bentonite colloids with Cs, Eu, Th and U in presence of humic acid: A flow field-flow fractionation study

机译:腐殖酸存在下膨润土胶体与Cs,Eu,Th和U的相互作用:流场-流分馏研究

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The interaction of Cs(I), Eu(III), Th(IV) and U(VI) with montmorillonite colloids was investigated in natural Grimsel Test Site groundwater over a 3years period. The asymmetric flow field-flow fractionation combined with various detectors was applied to study size variations of colloids and to monitor colloid association of trace metals. The colloids suspended directly in the low ionic strength (I), slightly alkaline granitic groundwater (I=10-3mol/L, pH 9.6) showed a gradual agglomeration with a size distribution shift from initially 10-200nm to 50-400nm within over 3years. The Ca2+ concentration of 2.1×10-4mol/L in the ground water is believed to be responsible for the slow agglomeration due to Ca2+ ion exchange against Li+ and Na+ at the permanently charged basal clay planes. Furthermore, the Ca2+ concentration lies close to the critical coagulation concentration (CCC) of 10-3molL-1 for clay colloids. Slow destabilization may delimit clay colloid migration in this specific groundwater over long time scales. Eu(III) and Th(IV) are found predominantly bound to clay colloids, while U(VI) prevails as the UO2(OH)3- complex and Cs(I) remains mainly as aquo ion under our experimental conditions. Speciation calculations qualitatively represent the experimental data. A focus was set on the reversibility of metal ion-colloid binding. Addition of humic acid as a competing ligand induces rapid metal ion dissociation from clay colloids in the case of Eu(III) even after previous aging for about 3years. Interestingly only partial dissociation occurs in the case of Th(IV). Experiments and calculations prove that the humate complexes dominate the speciation of all metal ions under given conditions. The partial irreversibility of clay bound Th(IV) is presently not understood but might play an important role for the colloid-mediated transport of polyvalent actinides over wide distances in natural groundwater.
机译:在3年的天然Grimsel试验场地下水中研究了Cs(I),Eu(III),Th(IV)和U(VI)与蒙脱石胶体的相互作用。非对称流场流分馏与各种检测器相结合,用于研究胶体的尺寸变化并监测痕量金属的胶体缔合。直接悬浮在低离子强度(I),弱碱性花岗岩地下水(I = 10-3mol / L,pH 9.6)中的胶体在3年内逐渐聚集,尺寸分布从最初的10-200nm迁移到50-400nm 。地下水中Ca2 +浓度为2.1×10-4mol / L被认为是由于在永久带电的基础粘土平面上与Li +和Na +发生Ca2 +离子交换而导致的缓慢团聚的原因。此外,对于粘土胶体,Ca2 +浓度接近于10-3molL-1的临界凝结浓度(CCC)。缓慢的去稳定作用可能会限制粘土胶体在长时间范围内在该特定地下水中的迁移。发现Eu(III)和Th(IV)主要与粘土胶体结合,而U(VI)以UO2(OH)3-络合物为主,而Cs(I)在我们的实验条件下主要以水族离子形式存在。形态计算定性地表示实验数据。重点放在金属离子-胶体结合的可逆性上。在腐殖酸(Eu(III))中加入腐殖酸作为竞争性配体会导致金属离子从粘土胶体中快速解离,即使之前已老化约3年。有趣的是,在Th(IV)的情况下仅发生部分解离。实验和计算证明,在给定条件下,腐植酸盐络合物支配着所有金属离子的形态。目前尚不了解粘土结合的Th(IV)的部分不可逆性,但可能对胶体介导的多价act系元素在天然地下水中远距离迁移起重要作用。

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