铁(III)和锰(II)二丁基磷酸化合物从硝酸溶液中萃取稀土(III)和镅(III

IF 0.9 Q4 CHEMISTRY, INORGANIC & NUCLEAR
D. N. Shishkin, N. D. Goletskii
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引用次数: 0

摘要

研究了不同稀释剂中铁锰二丁基磷酸(HDBP)化合物对硝酸溶液中稀土元素(REE)和镅(III)的萃取行为。有机相中铁和锰浓度的增加导致稀土元素分布比例的增加,在某些情况下,元素分离因子会发生明显变化。元素分离因子因稀释剂的不同而有显著差异。元素对分离因子的增加可以达到很高的值。例如,甲苯中的Er/Dy分离系数增加了5倍,氯仿中的Dy/Tb分离系数增加了7倍。在大多数情况下,使用十氢化萘作为稀释剂导致稀土元素分布比的最大增加。在以邻硝基甲苯(ONT)为稀释剂的体系中,在HDBP与Fe(III)的一定比例下,镅和REE(铈除外)的分离因子高到足以使其分离。讨论了过渡金属和溶剂对稀土元素分布和分离的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extraction of REE(III) and Am(III) from a Nitric Acid Solution with Fe(III) and Mn(II) Dibutyl Phosphoric Acid Compounds

The behavior of a number of REE and Am(III) during their extraction from nitric acid solutions with iron and manganese dibutyl phosphoric acid (HDBP) compounds in various diluents was studied. An increase in the concentration of iron and manganese in the organic phase leads to an increase in the REE distribution ratios and, in some cases, to a noticeable change in the element separation factors. The element separation factors significantly differ depending on the diluent. The increase in the separation factors of pairs of elements can reach high values. For example, the Er/Dy separation factor in toluene increases by a factor of 5, and the Dy/Tb separation factor in chloroform, by a factor of 7. The use of decalin as a diluent leads in most cases to a maximum increase in the REE distribution ratios. In the system with an o-nitrotoluene (ONT) diluent, at a certain ratio of HDBP to Fe(III), the separation factors of americium and REE (except cerium) are high enough to allow their separation. The influence of the transition metal and solvent on the distribution and separation of REE is discussed.

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来源期刊
Radiochemistry
Radiochemistry CHEMISTRY, INORGANIC & NUCLEAR-
CiteScore
1.30
自引率
33.30%
发文量
51
期刊介绍: Radiochemistry  is a journal that covers the theoretical and applied aspects of radiochemistry, including basic nuclear physical properties of radionuclides; chemistry of radioactive elements and their compounds; the occurrence and behavior of natural and artificial radionuclides in the environment; nuclear fuel cycle; radiochemical analysis methods and devices; production and isolation of radionuclides, synthesis of labeled compounds, new applications of radioactive tracers; radiochemical aspects of nuclear medicine; radiation chemistry and after-effects of nuclear transformations.
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