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Modeling and Speciation Study of Uranium(VI) and Technetium(VII) Coextraction with DEHiBA

机译:与DEHiBA共萃取铀(VI)和Tech(VII)的建模和形态研究

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摘要

The N,N-dialkylamide DEHiBA (N,N-di-2-ethylhexyl-isobutyramide) is a promising alternative extractant to TBP (tri-n-butylphosphate) to selectively extract uranium (VI) from plutonium(IV) and spent nuclear fuel fission products. Extraction of technetium, present as pertechnetic acid (HTcO4) in the spent fuel solution, by DEHiBA was studied for different nitric add and uranium concentrations. The uranium(VI) and technetium(VII) coextraction mechanism with DEHiBA was investigated to better understand the behavior of technetium in the solvent extraction process. Uranium and technetium distribution ratios were first determined from batch experiments. On the basis of these data, a thermodynamic model was developed. This model takes into account deviations from ideality in the aqueous phase using the simple solution concept. A good representation of uranium and technetium distribution data was obtained when considering the formation of <((DEHiBA)i(HNO3)i(HTcO4)(k))over bar> complexes, as well as mixed <((DEHiBA)(2)(UO2)(NO3)(TcO4))over bar> and <((DEHiBA)(3)(UO2)(NO3)(TcO4)(HNO3))over bar> complexes, where one pertechnetate anion replaces one nitrate in the uranium coordination sphere in the two complexes <((DEHiBA)(2)(UO2)-(NO)(2))over bar> and <((DEBBA)(3)(UO2)(NO3)(2)(HNO3))over bar>. Combination of complementary spectroscopic techniques (FT-IR and X-ray absorption) supported by theoretical calculations (density functional theory) enabled full characterization of the formation of mixed uranium technetium species <((DEHiBA)(2)(UO2)(NO3)(TcO4) )over bar>in the organic phase for the first time. The structural parameters of this complex are reported in the paper and lead to the conclusion that the pertechnetate group coordinates the uranyl cation in a monodentate fashion in the inner coordination sphere. This study shows how combining a macroscopic approach (distribution data acquisition and modeling) with molecular -scale investigations (FT-IR and X-ray absorption analysis supported by theoretical calculations) can provide a new insight into the description of a solvent extraction mechanism.
机译:N,N-二烷基酰胺DEHiBA(N,N-二-2-乙基己基-异丁酰胺)是TBP(磷酸三正丁酯)的有前途的替代提取剂,可从p(IV)和乏核燃料中选择性提取铀(VI)裂变产物。对于不同的硝酸添加量和铀浓度,研究了用DEHiBA萃取乏燃料溶液中以高tech酸(HTcO4)形式存在的tech。研究了DEHiBA与铀(VI)和tech(VII)的共萃取机理,以更好地了解the在溶剂萃取过程中的行为。铀和tech的分配比首先是通过分批实验确定的。基于这些数据,开发了热力学模型。该模型使用简单的解决方案概念考虑了水相中理想状态的偏差。当考虑在bar>络合物上形成<((DEHiBA)i(HNO3)i(HTcO4)(k))配合物以及混合<((DEHiBA)(2))时,可以很好地表示铀和tech的分布数据。 (UO2] [NO3] [TcO4))在柱上>和<[[DEHiBA] [3] [UO2] [NO3] [TcO4] [HNO3))在柱上>络合物,其中一种高tech酸盐阴离子取代了铀中的一种硝酸盐两个复合物<((DEHiBA)(2)(UO2)-(NO)(2))over bar>和<((DEBBA)(3)(UO2)(NO3)(2)(HNO3))在酒吧>。理论计算(密度泛函理论)支持的互补光谱技术(FT-IR和X射线吸收)的组合能够全面表征混合铀tech物种<((DEHiBA)(2)(UO2)(NO3)(第一次在有机相中超过TcO4))。本文报道了该复合物的结构参数,并得出结论,高tech酸酯基团在内部配位域以单齿方式配位铀酰阳离子。这项研究表明,如何将宏观方法(分布数据采集和建模)与分子尺度研究(理论计算支持的FT-IR和X射线吸收分析)结合起来,可以提供对溶剂萃取机理描述的新见解。

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