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首页> 外文期刊>Nukleonika >Determination of formation constants of uranyl(Ⅵ) complexes with a hydrophilic SO_3-Ph-BTP ligand, using liquid-liquid extraction
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Determination of formation constants of uranyl(Ⅵ) complexes with a hydrophilic SO_3-Ph-BTP ligand, using liquid-liquid extraction

机译:液-液萃取法测定具有亲水性SO_3-Ph-BTP配体的铀酰(Ⅵ)配合物的形成常数

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Complex formation between uranyl ion, UO22+, and a hydrophilic anionic form of SO3-Ph-BTP4- ligand, L4-, in water was studied by liquid-liquid extraction experiments performed over a range of the ligand and HNO3 concentrations in the aqueous phase, at a constant concentration of nitrate anions at 25 degrees C. The competition for UO22+ ions between the lipophilic TODGA extractant and the hydrophilic L4- ligand leads to the decrease in the uranyl distribution ratios, D, with an increasing L4- concentration. The model of the solvent extraction process used accounts - apart from uranyl complexation by TODGA and SO3-Ph-BTP4- - also for uranyl complexation by nitrates and for the decrease in the concentration of the free L4- ligand in the aqueous phase, due to its protonation, bonding in the uranyl complex and the distribution between the two liquid phases. The unusually strong dependence of the D values on the acidity, found in the experiment, could hardly be explained as due to L4- protonation merely. Three hypotheses were experimentally tested, striving to interpret the data in terms of additional extraction to the organic phase of ion associates of protonated TODGA cation with either partly protonated anionic L4- ligands or anionic UO22+ complexes with NO3- or L4-. None of them has been confirmed. The analysis of the results, based on the formal correction of free ligand concentrations, points to the formation of 1 : 1 and 1 : 2 uranyl - SO3-Ph-BTP complexes in the aqueous phase. The conditional formation constant of the 1:1 complex has been determined, log beta(L,1) = 2.95 +/- 0.15.
机译:通过对水相中一定范围的配体和HNO3浓度进行液-液萃取实验,研究了水中的铀酰离子UO22 +和亲水性阴离子SO3-Ph-BTP4-配体L4-之间的络合物形成,在25摄氏度时以恒定浓度的硝酸根阴离子存在。亲脂性TODGA萃取剂与亲水性L4-配体之间的UO22 +离子竞争导致铀酰分布比率D降低,而L4-浓度则升高。使用的溶剂萃取过程模型不仅考虑了TODGA和SO3-Ph-BTP4-的铀酰络合作用,还考虑了硝酸盐的铀酰络合作用以及水相中游离L4-配体浓度的降低,这是由于它的质子化,在铀酰络合物中的键合以及两个液相之间的分布。在实验中发现D值对酸度异常强的依赖性,仅由于L4-质子化很难解释。对三个假设进行了实验测试,力求从附加提取质子化TODGA阳离子与部分质子化阴离子L4-配体或具有NO3-或L4-的阴离子UO22 +络合物的离子缔合体的有机相中解释数据。他们都没有被确认。基于对游离配体浓度的形式校正,结果分析表明在水相中形成了1:1和1:2的铀酰-SO3-Ph-BTP复合物。已确定1:1络合物的条件形成常数,log beta(L,1)= 2.95 +/- 0.15。

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