首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Determination of formation constants and specific ion interaction coefficients for CanUO2(CO3)(3)((4-2n)-) complexes in NaCl solution by time-resolved laser-induced luminescence spectroscopy
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Determination of formation constants and specific ion interaction coefficients for CanUO2(CO3)(3)((4-2n)-) complexes in NaCl solution by time-resolved laser-induced luminescence spectroscopy

机译:通过时间分辨的激光诱导的发光光谱法测定CanuO2(CO 3)(3)((4-2N)((4-2N) - )复合物的CanOuO2(3)((4-2N) - )复合物的形成常数和特定离子相互作用系数

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摘要

The formation constants of CaUO2(CO3)(3)(2-) and Ca2UO2(CO3)(3)(aq) were determined in NaCl medium at ionic strengths between 0.1 and 1 mol kg(w)(-1) using time-resolved laser-induced luminescence spectroscopy (TRLS). Spectroluminescence titration of UO2(CO3)(3)(4-) complex by Ca2+ were conducted at atmospheric CO2(g) and varying pH values in order to eliminate the eventual precipitation of both schoepite (UO3:2H(2)O) and calcite (CaCO3) in aqueous solutions. To identify the stoichiometry of calcium, the slope analyses corrected by the Ringbom coefficient for UO2(CO3)(3)(4-) relative to pH and CO2(g)-instead of typical expression relative to UO22+ and CO32--was applied in this work. Satisfactory linear fits assessed the conditional stepwise formation constants in the range of ionic strength employed in this work, the values of which are in good agreement with literature data at comparable ionic strengths. Extrapolations to infinite dilution were realized in the framework of the specific ion interaction theory (SIT), also providing the evaluation of the specific ion interaction coefficients. The cumulative stability constants at infinite dilution was determined to be log(10)beta degrees(CaUO2(CO3)(3)(2-)) = 27.20 +/- 0.04 and log(10)beta degrees(Ca2UO2(CO3)(3)(aq)) = 30.49 +/- 0.05, which are in good agreement with extrapolation proposed elsewhere in literature using a different extrapolation framework. The specific ion interaction coefficients were found to be epsilon(CaUO2(CO3)(3)(2-),Na+) = (0.29 +/- 0.11) and epsilon(Ca2UO2(CO3)(3)(aq),NaCl) = (0.66 +/- 0.12) kg(w) mol(-1). Integration of alkali metals into the ternary species may explain these positive and relatively large interaction coefficients. Implications on the speciation of uranium in clay groundwaters, representative of radioactive waste repositories, and in seawater are discussed.
机译:使用时间的离子强度在NaCl培养基中测定CauO2(CO 3)(3)(3)(2-)(2-)(2-)(2-)和Ca2uO 2(3)(3)(3)(3)(3)(3)(3)(3)(3)(3)(3)(3)(-1)( - 1)。解决激光诱导的发光光谱(TRL)。通过Ca2 +的UO 2(CO 3)(3)(4)(4-)络合物的荧光荧光滴定在大气CO 2(g)和不同的pH值中,以消除斯基嵌段的最终沉淀(UO 3:2H(2)O)和方解石(Caco3)在水溶液中。为了鉴定钙的化学计量,通过相对于pH和CO 2(3)(3)(4-)相对于pH和CO 2(g)相对于UO 2 2 +和CO32的典型表达校正的斜坡分析 - 这项工作。令人满意的线性配合评估了在本作中使用的离子强度范围内的条件逐步形成常数,其值与在可相当离子强度下的文献数据吻合良好。在特定离子相互作用理论(SIT)的框架中实现了用于无限稀释的外推,还提供了对特定离子相互作用系数的评估。无限稀释的累积稳定性常数被确定为log(10)β度(CauO 2(Co 3)(3)(2-))= 27.20 +/- 0.04和log(10)β(Ca 2 O 2(CO 3)(3 )(aq))= 30.49 +/- 0.05,与使用不同的外推框架在文献中的其他地方提出的外推着良好的一致。发现特定的离子相互作用系数是ε(CAUO2(CO 3)(3)(2 - ),Na +)=(0.29 +/- 0.11)和ε(Ca2uO 2(CO 3)(3)(3),NaCl)= (0.66 +/- 0.12)kg(w)mol(-1)。将碱金属的整合到三元种类中可以解释这些正和相对大的相互作用系数。讨论了对粘土地下水中铀的影响,代表放射性废物储存库和海水的影响。

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