首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Determination of stability constants of lanthanide nitrate complex formation using a solvent extraction technique
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Determination of stability constants of lanthanide nitrate complex formation using a solvent extraction technique

机译:使用溶剂萃取技术测定硝酸镧系元素络合物形成的稳定性常数

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摘要

For lanthanides and actinides, nitrate complex formation is an important factor with respect to the reprocessing of nuclear fuels and in studies that treat partitioning and transmutation/conditioning. Different techniques, including microcalorimetry, various kinds of spectroscopy, ion-exchange and solvent extraction, can be used to determine stability constants of nitrate complex formation. However, it is uncommon that all lanthanides are studied at the same time, using the same experimental conditions and technique. The strengths of the complexes are different for lanthanides and actinides, a feature that may assist in the separation of the two groups. This paper deals with nitrate complex formation of lanthanides using a solvent extraction technique. Trace amounts of radioactive isotopes of lanthanides were produced at the TRIGA Mainz research reactor and at the Institutt for Energiteknikk in Kjeller, Norway (JEEP 11 reactor). The extraction of lanthanide ions into an organic phase consisting of 2, 6-bis-(benzoxazolyi)-4-dodecyloxylpyridine, 2-bromodecanoic acid and tert-butyl benzene as a function of nitrate ion concentration in the aqueous phase was studied in order to estimate the stability constants of nitrate complex formation. When the nitrate ion concentration is increased in the aqueous phase, the nitrate complex formation starts to compete with the extraction of metal ions. Thus the stability constants of nitrate complex formation can be estimated by measuring the decrease in extraction and successive fitting of an appropriate model. Extraction curves for La, Ce, Pr, Nd, Pm, Sm, Eu, Gd, Dy, Ho and Er were obtained and stability constants for their nitrate complex formation were estimated. Tb, Tm, Yb and Lu were also investigated, but no stability constants could be determined. The distribution ratios for the metal ions at low nitrate ion concentration were obtained at the same time, showing the effect of lanthanide contraction resulting in decreasing extraction along the series. A clear tetrad effect in the lanthanide group was also found.
机译:对于镧系元素和act系元素,硝酸盐配合物的形成对于核燃料的后处理以及在处理分配和trans变/调节的研究中都是重要的因素。可以使用包括微量量热法,各种光谱学,离子交换和溶剂萃取在内的不同技术来确定硝酸盐络合物形成的稳定性常数。但是,使用相同的实验条件和技术同时研究所有镧系元素是很罕见的。对于镧系元素和act系元素,络合物的强度是不同的,这一特征可能有助于两组分离。本文使用溶剂萃取技术处理镧系元素的硝酸盐络合物的形成。在TRIGA Mainz研究堆和挪威Kjeller Energiteknikk研究所(JEEP 11反应堆)生产了痕量的镧系元素放射性同位素。研究了将镧系元素离子萃取到由2、6-双-(苯并恶唑基)-4-十二烷基氧基吡啶,2-溴脱羧酸和叔丁基苯组成的有机相中,作为水相中硝酸根离子浓度的函数,以便估计硝酸盐配合物形成的稳定性常数。当水相中硝酸根离子浓度增加时,硝酸根络合物的形成开始与金属离子的提取竞争。因此,可以通过测量适当模型的提取减少和连续拟合来估计硝酸盐络合物形成的稳定常数。获得了La,Ce,Pr,Nd,Pm,Sm,Eu,Gd,Dy,Ho和Er的萃取曲线,并估算了其硝酸盐络合物形成的稳定性常数。还研究了Tb,Tm,Yb和Lu,但无法确定稳定性常数。同时获得了低硝酸根离子浓度下金属离子的分配比,显示了镧系元素收缩的效应,导致沿系列的萃取减少。还发现镧系有明显的四联效应。

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