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Tc(IV)-异抗坏血酸体系的溶解性、络合性和热力学性质:M(IV)系列中的趋势。

Solubility, complexation and thermodynamics of the Tc(IV)-isosaccharinic acid system: Trends in the M(IV) series.

机构信息

Pohang University of Science and Technology, Division of Advanced Nuclear Engineering, Pohang, 37673, Republic of Korea.

Karlsruhe Institute of Technology, Institute for Nuclear Waste Disposal, Eggenstein-Leopoldshafen, 76344, Germany.

出版信息

Chemosphere. 2024 Sep;364:143140. doi: 10.1016/j.chemosphere.2024.143140. Epub 2024 Aug 20.

Abstract

Isosaccharinic acid (HISA, or ISA in its deprotonated form) is the main degradation product of cellulose under alkaline conditions. It can form strong complexes with radionuclides and other toxic metal ions, eventually enhancing their mobility in the context of nuclear waste repositories and other environmental systems. Tc is a redox-sensitive, long-lived fission product produced in high yield in nuclear reactors. The solubility of Tc(IV) was investigated in 0.5 M NaCl‒NaISA‒NaOH solutions with 6 ≤ pH ≤ 12.5 and 10 M ≤ [ISA] ≤ 0.2 M. Complete chemical and thermodynamic models were derived on the basis of solubility data, (pe + pH) measurements, redox speciation, and solid phase characterization. These models include the previously unreported aqueous complexes TcO(OH)(ISA) and TcO(OH)(ISA). In spite of the small size and high polarizability of the Tc metal ion, the Tc(IV)-ISA complexes described in this work are significantly weaker than other ISA complexes formed with larger M metal ions, i.e., Zr, Pu and U. This unexpected behavior can be possibly explained by the strong hydrolysis of Tc(IV) and corresponding stabilization of the TcO moiety, which does not occur for other M(IV) systems. Thermodynamic data derived in this work can be implemented in geochemical calculations of relevance in the context of nuclear waste disposal and other environmental applications.

摘要

异抗坏血酸(HISA,或其去质子形式 ISA)是碱性条件下纤维素的主要降解产物。它可以与放射性核素和其他有毒金属离子形成强配合物,最终增强它们在核废料处置库和其他环境系统中的迁移性。Tc 是一种氧化还原敏感的长寿命裂变产物,在核反应堆中产量很高。研究了 Tc(IV)在 0.5 M NaCl-NaISA-NaOH 溶液中的溶解度,pH 值为 6 至 12.5,[ISA]为 10 M 至 0.2 M。根据溶解度数据、(pe + pH)测量、氧化还原形态和固相特性,推导出了完整的化学和热力学模型。这些模型包括以前未报道的 TcO(OH)(ISA)和 TcO(OH)(ISA)水合配合物。尽管 Tc 金属离子尺寸小且极化率高,但本文所述的 Tc(IV)-ISA 配合物明显弱于与较大 M 金属离子(即 Zr、Pu 和 U)形成的其他 ISA 配合物。这种出乎意料的行为可能可以通过 Tc(IV)的强烈水解和相应的 TcO 部分的稳定来解释,而其他 M(IV)体系则不会发生这种情况。本文中得出的热力学数据可用于与核废料处置和其他环境应用相关的地球化学计算。

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