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海水中铀和镎的X射线吸收光谱(XAS)和时间分辨激光诱导荧光光谱(TRLIF)

XAS and TRLIF spectroscopy of uranium and neptunium in seawater.

作者信息

Maloubier Melody, Solari Pier Lorenzo, Moisy Philippe, Monfort Marguerite, Den Auwer Christophe, Moulin Christophe

机构信息

University of Nice Sophia Antipolis, Nice Chemistry Institute UMR CNRS 7272, 06108, Nice, France.

出版信息

Dalton Trans. 2015 Mar 28;44(12):5417-27. doi: 10.1039/c4dt03547j.

Abstract

Seawater contains radionuclides at environmental levels; some are naturally present and others come from anthropogenic nuclear activity. In this report, the molecular speciation in seawater of uranium(VI) and neptunium(V) at a concentration of 5 × 10(-5) M has been investigated for the first time using a combination of two spectroscopic techniques: Time-resolved laser-induced fluorescence (TRLIF) for U and extended X-ray absorption fine structure (EXAFS) for U and Np at the LIII edge. In parallel, the theoretical speciation of uranium and neptunium in seawater at the same concentration is also discussed and compared to spectroscopic data. The uranium complex was identified as the neutral carbonato calcic complex UO2(CO3)3Ca2, which has been previously described in other natural systems. In the case of neptunium, the complex identified is mainly a carbonato complex whose exact stoichiometry is more difficult to assess. The knowledge of the actinide molecular speciation and reactivity in seawater is of fundamental interest in the particular case of uranium recovery and more generally regarding the actinide life cycle within the biosphere in the case of accidental release. This is the first report of actinide direct speciation in seawater medium that can complement inventory data.

摘要

海水中含有环境水平的放射性核素;一些是天然存在的,另一些则来自人为核活动。在本报告中,首次使用两种光谱技术相结合的方法,研究了浓度为5×10⁻⁵ M的海水中铀(VI)和镎(V)的分子形态:利用时间分辨激光诱导荧光(TRLIF)分析铀,利用扩展X射线吸收精细结构(EXAFS)在LIII边缘分析铀和镎。同时,还讨论了相同浓度下海水中铀和镎的理论形态,并与光谱数据进行了比较。已鉴定出的铀络合物为中性碳酸根钙络合物UO₂(CO₃)₃Ca₂,该络合物先前已在其他自然系统中被描述。对于镎而言,所鉴定出的络合物主要是一种碳酸根络合物,其确切化学计量比更难评估。了解海水中锕系元素的分子形态和反应性,对于铀回收的特殊情况以及在意外释放情况下更广泛地了解生物圈中锕系元素的生命周期具有根本意义。这是关于海水介质中锕系元素直接形态分析的首份报告,可补充存量数据。

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