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首页> 外文期刊>Geochemical Transactions >Deliquescence of NaCl-NaNO3, KNO3-NaNO3, and NaCl-KNO3 salt mixtures from 90 to 120°C
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Deliquescence of NaCl-NaNO3, KNO3-NaNO3, and NaCl-KNO3 salt mixtures from 90 to 120°C

机译:90至120°C的NaCl-NaNO3,KNO3-NaNO3和NaCl-KNO3盐混合物的潮解

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We conducted reversed deliquescence experiments in saturated NaCl-NaNO3-H2O, KNO3-NaNO3-H2O, and NaCl-KNO3-H2O systems from 90 to 120 °C as a function of relative humidity and solution composition. NaCl, NaNO3, and KNO3 represent members of dust salt assemblages that are likely to deliquesce and form concentrated brines on high-level radioactive waste package surfaces in a repository environment at Yucca Mountain, NV. Discrepancy between model prediction and experiment can be as high as 8% for relative humidity and 50% for dissolved ion concentration. The discrepancy is attributed primarily to the use of 25 °C models for Cl-NO3 and K-NO3 ion interactions in the current Yucca Mountain Project high-temperature Pitzer model to describe the nonideal behavior of these highly concentrated solutions.
机译:根据相对湿度和溶液组成,我们在90至120°C的饱和NaCl-NaNO3-H2O,KNO3-NaNO3-H2O和NaCl-KNO3-H2O系统中进行了反潮解实验。 NaCl,NaNO3和KNO3代表粉尘盐组合的成员,这些粉尘盐组合可能会在内华达州尤卡山的处置库环境中,在高放射性废物包装表面上潮解并形成浓盐水。模型预测和实验之间的相对湿度差异可能高达8%,而溶解离子浓度的差异可能高达50%。差异主要归因于在当前的丝兰山项目高温Pitzer模型中使用25°C的Cl-NO3和K-NO3离子相互作用模型来描述这些高度浓缩溶液的非理想行为。

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