首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Thermodynamic interpretation of neptunium coprecipitation in uranophane for application to the Yucca Mountain repository
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Thermodynamic interpretation of neptunium coprecipitation in uranophane for application to the Yucca Mountain repository

机译:铀尿烷中n共沉淀的热力学解释在丝兰山储存库中的应用

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摘要

Interpretation and modeling of recent experimental data [1] yield thermodynamic constants for the distribution of trace Np(V) between aqueous solutions and uranophane. These data indicate that neptunyl is relatively excluded from the uranyl mineral structure, but the interpretation depends on uncertain aqueous speciation and thermodynamic properties as a function of temperature. Despite Np exclusion, the low calculated solubility of uranophane at 25 degrees C under conditions relevant to the proposed nuclear waste repository at Yucca Mountain, Nevada, leads to Np concentrations at equilibrium with a Np-bearing uranophane solid solution that are low compared to concentrations invoked as solubility limits in Yucca Mountain performance assessments.
机译:最新实验数据的解释和建模[1]得出了水溶液和铀酰芬太尼之间痕量Np(V)分布的热力学常数。这些数据表明,在铀酰矿物结构中相对排除了海un基,但其解释取决于不确定的水物种和温度的热力学性质。尽管排除了Np,但在与内华达州尤卡山拟议的核废料处置库有关的条件下,于25°C时,铀酰phane的计算溶解度较低,导致Np的浓度与含Np的铀酰phann固溶体的平衡值低于所调用的浓度作为丝兰山性能评估中的溶解度极限。

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