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Competitive effect of iron(Ⅲ) on metal complexation by humic substances: Characterisation of ageing processes

机译:铁(Ⅲ)对腐殖质金属络合的竞争作用:时效过程的表征

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Aiming at an assessment of counteractive effects on colloid-borne migration of actinides in the event of release from an underground repository, competition by Fe(Ⅲ) in respect of metal complexation by dissolved organic matter was investigated for the example of Eu(Ⅲ) as an analogue of trivalent actinides. Complexation with different humic materials was examined in cation exchange experiments, using ~(59)Fe and ~(152)Eu as radioactive tracers for measurements in dilute systems as encountered in nature. Competitive effects proved to be significant when Fe is present at micromolar concentrations. Flocculation as a limiting process was attributed to charge compensation of humic colloids. Fe fractions bound to humic acids (HA) were higher than 90%, exceeding the capacity of binding sites at high Fe concentrations. It is thus concluded that the polynuclear structure of hydrolysed Fe(Ⅲ) is maintained when bound to HA, which is also inferred from UV-Vis spectrometry. The competitive effect was found to be enhanced if Fe and HA were in contact before Eu was added. Depending on the time of Fe/HA pre-equilibration, Eu complexation decreased asymptotically over a time period of several weeks, the amount of bound Fe being unchanged. Time-dependent observations of UV-Vis spectra and pH values revealed that the ageing effect was due to a decline in Fe hydrolysis rather than structural changes within HA molecules. Fe polycations are slowly degraded in contact with humic colloids, and more binding sites are occupied as a consequence of dispersion. The extent of degradation as derived from pH shifts depended on the Fe/HA ratio.
机译:为了评估of化物从地下储存库释放时对event系元素胶体迁移的抵消作用,以Eu(Ⅲ)为例,研究了Fe(Ⅲ)在溶解性有机物与金属络合方面的竞争。三价act系元素的类似物。在阳离子交换实验中,使用〜(59)Fe和〜(152)Eu作为放射性示踪剂,在自然环境中遇到的稀体系中进行测量,研究了与不同腐殖质的络合情况。当铁以微摩尔浓度存在时,竞争效应非常明显。絮凝作为限制过程归因于腐殖胶体的电荷补偿。与腐殖酸(HA)结合的铁级分高于90%,超过了高铁浓度下结合位点的容量。因此可以得出结论,水解的Fe(Ⅲ)与HA结合后,其多核结构得以保持,这也可以从UV-Vis光谱法中推断出来。如果在添加Eu之前将Fe和HA接触,则会增强竞争效果。根据Fe / HA预平衡的时间,Eu络合物在几周的时间内逐渐减少,结合的Fe的量保持不变。 UV-Vis光谱和pH值随时间变化的观察表明,老化效应是由于Fe水解的减少,而不是HA分子内部的结构变化。 Fe聚阳离子在与腐殖质胶体接触时会缓慢降解,并且由于分散而占据了更多的结合位点。 pH值变化引起的降解程度取决于Fe / HA比。

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