Novikov Anton P, Zagidullin Karim A, Kuznetsov Vitaly V, Belova Elena V, Grigoriev Mikhail S, Volkov Mikhail A, Afanasiev Andrey V, German Konstantin E, Poineau Frederic
Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, 31, Bldg. 4, Leninsky prosp., Moscow 119071, Russian Federation.
Mendeleev University of Chemical Technologies, Moscow 125047, Russian Federation.
ACS Omega. 2025 Aug 15;10(33):38064-38072. doi: 10.1021/acsomega.5c05158. eCollection 2025 Aug 26.
The formation of Tc-(VII)-Zr-(IV) species in nitric acid and their extraction in kerosene/tributyl phosphate (TBP) phases was studied. The technetium distribution coefficient ( ) was evaluated as a function of nitric acid concentration (1-7 M) and is in the range of 25-37, which is significantly higher compared to solutions that do not contain zirconium and confirms the synergism of their coextraction. Emphasis was placed on 1 M HNO solution, which is the initial concentration used in uranium extraction during spent nuclear fuel reprocessing. The behavior of pertechnetate under these conditions is complex, primarily due to the formation of Tc-(VII)-Zr-(IV) species, a phenomenon that remains under investigation. In order to describe the coextraction mechanism, it is essential to characterize the zirconium species, with focus on intermolecular interactions. A neutral complex, [(HO)(ReO)Zr-(μ-OH)Zr-(ReO)(HO)]·3HO (1), was employed as a structural analogue to the proposed Tc-Zr species. This complex was isolated from solution and analyzed via single-crystal X-ray diffraction (SCXRD), corroborating the structural data previously reported. Furthermore, the positions of the H atoms in (1) were refined, and noncovalent interactions were analyzed using the Hirshfeld surface method. The H···O/O···H (63.0%) contacts is the main contribution to the crystal packing. The hydrolyzed form of zirconium perrhenate consists of a {Zr(OH)} core surrounded by six perrhenate anions acting as monodentate ligands and six coordination water molecules. Pertechnetate and perrhenate zirconium complexes exhibit a similar physico-chemical behavior and were studied by MALTI-TOF and powder X-ray diffraction (PXRD). The MALDI-TOF analysis shows the presence of dimeric and trimeric species.
研究了硝酸中 Tc-(VII)-Zr-(IV) 物种的形成及其在煤油/磷酸三丁酯(TBP)相中的萃取。评估了锝分配系数( )作为硝酸浓度(1 - 7 M)的函数,其范围为 25 - 37,与不含锆的溶液相比显著更高,这证实了它们共萃取的协同作用。重点研究了 1 M HNO 溶液,这是乏核燃料后处理中铀萃取所用的初始浓度。在此条件下高锝酸盐的行为很复杂,主要是由于 Tc-(VII)-Zr-(IV) 物种的形成,这一现象仍在研究中。为了描述共萃取机制,表征锆物种至关重要,重点是分子间相互作用。一种中性配合物 [(HO)(ReO)Zr-(μ-OH)Zr-(ReO)(HO)]·3HO (1) 被用作所提出的 Tc-Zr 物种的结构类似物。该配合物从溶液中分离出来并通过单晶 X 射线衍射(SCXRD)进行分析,证实了先前报道的结构数据。此外,对 (1) 中 H 原子的位置进行了精修,并使用 Hirshfeld 表面方法分析了非共价相互作用。H···O/O···H(63.0%)接触对晶体堆积起主要作用。高铼酸锆的水解形式由一个 {Zr(OH)} 核心组成,周围有六个作为单齿配体的高铼酸根阴离子和六个配位水分子。高锝酸盐和高铼酸锆配合物表现出相似的物理化学行为,并通过基质辅助激光解吸电离飞行时间质谱(MALTI-TOF)和粉末 X 射线衍射(PXRD)进行了研究。MALDI-TOF 分析表明存在二聚体和三聚体物种。