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Estimation of nuclear volume dependent fractionation of mercury isotopes in equilibrium liquid-vapor evaporation experiments

机译:平衡液-汽蒸发实验中汞同位素的核体积相关分数估算

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To confirm theoretical predictions of the isotopic signature of the nuclear volume effect (NVE) for Hg, liquid-vapor Hg isotope fractionation was investigated under equilibrium conditions in the dark at room temperature. Since the other mass independent fractionation (MIF) mechanism proposed for Hg is a kinetic phenomenon only, equilibrium experiments are the best approach to isolate the NVE. Because of the small magnitude of NVE MIF, previous equilibrium experimental results have had relatively large error. The equilibrium evaporation experiment resulted both in mass dependent fractionation (represented by δ~(202)Hg) and MIF (δ~(199)Hg and δ~(201)Hg). The average liquid-vapor δ~(202)Hg difference was 1.34±0.18% (2SE) and 1.08±0.07% (2SE) for two sets of experiments with the vapor phase isotopically lighter than the liquid. A positive MIF of the odd isotopes in the vapor phase was observed with an average δ~(199)Hg of 0.14±0.01% (2SE) and an average δ~(201)Hg of 0.09±0.01% (2SE). For the 6 experiments, the average ratio of NVE MIF of the two odd isotopes (δ~(199)Hg/δ~(201)Hg) in the vapor phase was 1.59±0.05 (2SE) confirming a recent estimation of the NVE δ~(199)Hg/δ~(201)Hg ratio of ~1.65. A conceptual model applying first principles was used to explain the fractionation observed between Hg liquid and Hg vapor under equilibrium conditions.
机译:为了证实有关汞的核体积效应(NVE)同位素特征的理论预测,我们在黑暗中于室温下于平衡条件下研究了液态蒸气汞同位素分馏。由于针对汞提出的其他质量独立分级分离(MIF)机理仅是一种动力学现象,因此平衡实验是分离NVE的最佳方法。由于NVE MIF的幅度较小,以前的平衡实验结果具有较大的误差。平衡蒸发实验产生了质量分数(由δ〜(202)Hg表示)和MIF(δ〜(199)Hg和δ〜(201)Hg)。两组实验的同位素比液体轻,两组的平均液汽δ〜(202)Hg差为1.34±0.18%(2SE)和1.08±0.07%(2SE)。观察到气相中奇数同位素的MIF为正,平均δ〜(199)Hg为0.14±0.01%(2SE),平均δ〜(201)Hg为0.09±0.01%(2SE)。对于这6个实验,气相中两个奇数同位素(δ〜(199)Hg /δ〜(201)Hg)的NVE MIF的平均比为1.59±0.05(2SE),证实了最近对NVEδ的估计〜(199)Hg /δ〜(201)Hg比为〜1.65。应用第一原理的概念模型用于解释在平衡条件下观察到的汞液体和汞蒸气之间的分馏。

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