首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Use of the transpiration method to study polonium evaporation from liquid lead-bismuth eutectic at high temperature
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Use of the transpiration method to study polonium evaporation from liquid lead-bismuth eutectic at high temperature

机译:利用蒸腾方法研究高温下液态铅-铋共晶中tec的蒸发

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摘要

Qualitative and quantitative understanding of Po volatilization under different conditions is of key importance for safety assessments of lead-bismuth eutectic (LBE) based nuclear reactors, spallation targets and accelerator driven systems. In this work we explore the possibilities of the transpiration method in combination with simple models to study the equilibrium and kinetics of Po evaporation from highly diluted solutions in lead-bismuth eutectic between 600 and 1000 degrees C in Ar/5% H-2 and Ar. On the basis of evaporation experiments at various carrier gas flow rates, we identified the conditions of vapor saturation allowing the determination of equilibrium constants. From the limiting behavior at high flow rates, values for the maximal evaporation rate of Po from LBE were estimated. Measurements of evaporation as a function of time were consistent with the assumption that polonium dissolved in LBE obeys Henry's law. A theoretical analysis furthermore suggested that diffusion of polonium in LBE was not a rate limiting factor for evaporation under vapor saturation conditions. Newly determined values for the Henry constant of Po in LBE between 600 and 1000 degrees C were consistent with previously derived correlations.
机译:对不同条件下Po挥发的定性和定量了解对于基于铅铋共晶(LBE)的核反应堆,散裂靶标和加速器驱动系统的安全评估至关重要。在这项工作中,我们结合简单的模型探讨了蒸散方法的可能性,以研究Ar / 5%H-2和Ar中600-1000摄氏度下铅铋共晶中高度稀释的溶液中Po蒸发的平衡和动力学。在各种载气流速下的蒸发实验的基础上,我们确定了允许确定平衡常数的蒸气饱和条件。根据高流速下的极限行为,可以估算出LBE中Po的最大蒸发速率。蒸发量随时间变化的测量结果符合以下假设:溶解在LBE中的po遵守亨利定律。理论分析进一步表明,L在LBE中的扩散不是蒸汽饱和条件下蒸发的速率限制因素。 LBE中Po的亨利常数的最新确定值在600到1000摄氏度之间与先前得出的相关性一致。

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