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鉴定和量化汉福德废物罐 AN-102 中的锝种。

Identification and Quantification of Technetium Species in Hanford Waste Tank AN-102.

机构信息

Energy and Environment Directorate, Pacific Northwest National Laboratory, Richland, Washington 99354, United States.

Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, Richland, Washington 99354, United States.

出版信息

Anal Chem. 2020 Oct 20;92(20):13961-13970. doi: 10.1021/acs.analchem.0c02864. Epub 2020 Oct 8.

Abstract

Technetium-99 (Tc), a high yield fission product generated in nuclear reactors, is one of the most difficult contaminants to address at the U.S. Department of Energy Hanford, Savannah River, and other sites. In strongly alkaline solutions typifying Hanford tank waste, Tc exists as pertechnetate (TcO) (oxidation state VII) as well as in reduced forms (oxidation state < VII), collectively known as non-pertechnetate (non-TcO) species. Designing strategies for effective Tc management, including separation and immobilization, necessitates understanding the molecular structure of the non-TcO species and their identification in actual tank waste samples. Identification of non-TcO species would facilitate the development of new treatment technologies effective for dissimilar Tc species. Toward this objective, a spectroscopic library of the Tc(I) [-Tc(CO)] and Tc(II, IV, V, VII) compounds was generated and applied to the characterization of the actual Hanford AN-102 tank waste supernatant, which was processed to adjust Na concentration to ∼5.6 M and remove Cs by spherical resorcinol-formaldehyde (sRF) ion-exchange resin. Post Cs removal, the cesium-loaded sRF column was eluted with 0.45 M HNO. As-received AN-102, Cs-depleted effluent, and sRF eluate fractions were comprehensively characterized for chemical composition and speciation of Tc using Tc nuclear magnetic resonance spectroscopy and X-ray absorption spectroscopy. It was demonstrated for the first time that non-TcO Tc present in the AN-102 tank waste is composed of several low-valent Tc species, including the Tc(I) [-Tc(CO)] and Tc(IV) compounds. This is the first demonstration of multiple non-TcO species co-existing in the Hanford tank waste, highlighting their importance for the waste processing.

摘要

锝-99(Tc)是核反应堆中产生的一种高产量裂变产物,是美国能源部汉福德、萨凡纳河等工厂最难处理的污染物之一。在典型的汉福德罐废物的强碱性溶液中,Tc 以高锝酸盐(TcO)(氧化态 VII)以及还原形式(氧化态 < VII)存在,统称为非高锝酸盐(非-TcO)物质。设计有效的 Tc 管理策略,包括分离和固定,需要了解非-TcO 物质的分子结构,并在实际罐废物样品中对其进行鉴定。鉴定非-TcO 物质将有助于开发针对不同 Tc 物质的新型处理技术。为实现这一目标,生成了 Tc(I)[-Tc(CO)]和 Tc(II、IV、V、VII)化合物的光谱库,并将其应用于实际汉福德 AN-102 罐废物上清液的特性描述,该上清液经过处理将 Na 浓度调节至约 5.6 M 并通过球形间苯二酚-甲醛(sRF)离子交换树脂去除 Cs。Cs 去除后,用 0.45 M HNO 洗脱负载 Cs 的 sRF 柱。对 AN-102 原样、Cs 贫化流出物和 sRF 洗脱物进行了全面的化学成分和 Tc 形态分析,采用 Tc 核磁共振波谱法和 X 射线吸收光谱法。首次证明,存在于 AN-102 罐废物中的非-TcO Tc 由几种低价 Tc 物质组成,包括 Tc(I)[-Tc(CO)]和 Tc(IV)化合物。这首次证明了 Hanford 罐废物中存在多种非-TcO 物质共存,突出了它们对废物处理的重要性。

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