Lippold H, Mansel A, Kupsch H
Institut für Interdisziplinäre Isotopenforschung, Permoserstr. 15, 04318 Leipzig, Germany.
J Contam Hydrol. 2005 Feb;76(3-4):337-52. doi: 10.1016/j.jconhyd.2004.11.005. Epub 2005 Jan 8.
With the objective to assess the relevance of competitive effects in respect of the humic colloid-borne migration of actinides in case of release, the influence of Al(III) on humate complexation of La(III) as an analogue of trivalent actinides was investigated for various humic materials by using 140La as a radioactive tracer, allowing measurements in very dilute systems to simulate realistic settings. Generally, competition by aluminium is not detectable unless the metal-loading capacity of the humic colloids is nearly exhausted. For average contents of organic carbon, a threshold value of 10(-6) M Al(III) can be specified. The metal exchange turned out to be kinetically hindered. Effects on co-adsorption of La(III) and humic acid were found to be less important. Immobilization by the concomitantly induced flocculation process outweighs the role of displacement effects. Comparative studies on complexation and flocculation of humic acid with Al(III), Ga(III), In(III), Sc(III), Y(III), and La(III) were undertaken in order to evaluate the influence of specific properties apart from ion charge and to characterize the mechanism of flocculation. In spite of considerable variations in the binding affinities among these metals, it can be inferred that the possibility of significant competitive effects in natural aquatic systems is confined to Al(III). Complex stabilities and flocculation efficiencies proved to be interrelated. Precipitation is thus attributed to homocoagulation of humic colloids induced by charge compensation, which is further supported by flocculation experiments with Al(III) depending on pH, ionic strength, and humic acid concentration.
为了评估在释放情况下,竞争效应对于锕系元素在腐殖质胶体上迁移的相关性,以140La作为放射性示踪剂,研究了Al(III)对作为三价锕系元素类似物的La(III)与各种腐殖质材料形成腐殖酸盐络合物的影响,从而能够在非常稀的体系中进行测量以模拟实际情况。一般来说,除非腐殖质胶体的金属负载能力几乎耗尽,否则铝的竞争作用是无法检测到的。对于有机碳的平均含量,可以确定一个10(-6) M Al(III)的阈值。结果表明金属交换在动力学上受到阻碍。发现对La(III)和腐殖酸共吸附的影响不太重要。伴随诱导的絮凝过程导致的固定作用超过了置换效应的作用。对腐殖酸与Al(III)、Ga(III)、In(III)、Sc(III)、Y(III)和La(III)的络合和絮凝进行了比较研究,以评估除离子电荷外的特定性质的影响,并表征絮凝机制。尽管这些金属之间的结合亲和力存在相当大的差异,但可以推断,在天然水生系统中产生显著竞争效应的可能性仅限于Al(III)。络合物稳定性和絮凝效率被证明是相互关联的。因此,沉淀归因于电荷补偿引起的腐殖质胶体的同凝作用,这一点通过Al(III)的絮凝实验得到进一步支持,该实验取决于pH、离子强度和腐殖酸浓度。