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伊利石表面钚的吸附与氧化还原形态

Sorption and Redox Speciation of Plutonium at the Illite Surface.

机构信息

Institut für Nukleare Entsorgung, Karlsruhe Institute of Technology , P.O. Box 3640, D-76021 Karlsruhe, Germany.

出版信息

Environ Sci Technol. 2016 Feb 16;50(4):2092-8. doi: 10.1021/acs.est.5b05129. Epub 2016 Feb 3.

Abstract

The geochemical behavior of Pu strongly depends on its redox speciation. In this study, we investigated Pu sorption onto Na-illite, a relevant component of potential host rocks for high-level nuclear waste repositories, under anaerobic conditions. When contacting Pu (85% Pu(IV), 11% Pu(V), and 4% Pu(III); 8 × 10(-11) < [Pu]tot/M < 10(-8)) with illite in 0.1 M NaCl at pH between 3 and 10, Pu uptake was characterized by log Rd > 4 (Rd: distribution coefficient in L kg(-1)). Small amounts of aqueous Pu(V) were detected in solution on contact with illite after 1 week, which is not expected to be stable at the measured redox potentials (Eh) in our experiments. This observation suggests time-dependent reduction of Pu(V) to Pu(IV). After one year, log Rd values had increased compared to those after 1 week due to the reduction of weakly adsorbing Pu(V). For pH < 5, Pu(IV) and Pu(III) coexisted in solution under our experimental conditions, showing that Pu(IV) reduction to Pu(III) occurred in the illite suspension. Taking (i) surface complexation constants determined for Eu(III)-illite interaction (with redox-insensitive Eu(III) as a chemical analogue to Pu(III)), (ii) the known constant for Pu(III)-Pu(IV) redox transition, and (iii) measured Eh and pH, overall Pu uptake was well-predicted.

摘要

Pu 的地球化学行为强烈依赖于其氧化还原形态。在这项研究中,我们在厌氧条件下研究了 Pu 在钠沸石(高放核废物处置库潜在宿主岩石的相关成分)上的吸附。当 Pu(85% Pu(IV)、11% Pu(V)和 4% Pu(III);8 × 10(-11) < [Pu]tot/M < 10(-8))与 0.1 M NaCl 中的伊利石在 pH 3 至 10 之间接触时,Pu 的摄取特征为 log Rd > 4(Rd:分配系数,单位为 L kg(-1))。与伊利石接触 1 周后,溶液中检测到少量的水合 Pu(V),这在我们实验中测量的氧化还原电位(Eh)下预计不会稳定。这一观察结果表明 Pu(V)随时间发生还原。与 1 周后的 log Rd 值相比,一年后,log Rd 值有所增加,这是由于弱吸附的 Pu(V)还原所致。对于 pH < 5,在我们的实验条件下,Pu(IV)和 Pu(III)同时存在于溶液中,表明 Pu(IV)在伊利石悬浮液中还原为 Pu(III)。考虑到(i)Eu(III)-伊利石相互作用的表面络合常数(Eu(III)作为 Pu(III)的化学类似物,具有氧化还原不敏感特性),(ii)已知的 Pu(III)-Pu(IV)氧化还原转变常数,以及(iii)测量的 Eh 和 pH,整体 Pu 摄取得到了很好的预测。

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