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首页> 外文期刊>Journal of Molecular Liquids >Investigation of ionic local structure in molten salt fast reactor LiF-ThF4-UF4 fuel by EXAFS experiments and molecular dynamics simulations
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Investigation of ionic local structure in molten salt fast reactor LiF-ThF4-UF4 fuel by EXAFS experiments and molecular dynamics simulations

机译:EXAFS实验及分子动力学模拟研究熔盐快速反应器LiF-THF4燃料离子局部结构的研究

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This article focuses on the speciation ofmolten fluoride mixtures based on ThF4 and UF4 actinides used in molten salt reactors. The local structure of molten AF-MF4 systems (A=Li+, Na+, K+; M = Th4+, U4+) was studied in situ by combining measurements by high temperature X-ray absorption spectroscopy and molecular dynamics simulations. In the molten state, 20 higher than the melting temperature, these mixtures are composed of free fluorine and anionic species [MF7](3-), [MF8](4-) and [MF9](5-) whose distribution varies with the amount of MF4 (M = Th4+, U4+). Regardless of the cation, these complexes consist of an average of 8 F- neighbors for MF4 content is lower than 35 mol%. This value decreases to 7 as the size of the alkaline ion A (A=Li+, Na+, K+) increases. The [MFx](4-x) species are linked together by bridging fluorine ions to form long chains [MxFY](4x-y). The addition of a few percent UF4 to the eutectic LiF-ThF4 composition (77.5 mol% - 22.5 mol%) at leads to a slight increase in the population of free fluorine ions due to the breakdown of the Th-F links to form complexes [UFx](4-x) isolated or connected to the (ThxFy)(4x-y) chains. This change in the structure of the liquid results in a slight decrease in viscosity when a few mol. % of UF4 is added. (C) 2020 Published by Elsevier B.V.
机译:本文侧重于基于熔融盐反应器中使用的THF4和UF4散体的氟化坚固的氟化物混合物的形态。通过将测量结果相结合通过组合通过高温X射线吸收光谱和分子动力学模拟来研究熔融AF-MF4系统(A = Li +,Na +,K +; M = Th4 +,U4 +)的局部结构。在熔融状态下,高于熔化温度的20,这些混合物由游离氟和阴离子物质[MF7](3-),[MF8](4-)和[MF9](5-)组成,其分布随着时间的变化而异MF4的量(m = th4 +,U4 +)。无论阳离子如何,这些配合物的平均值包括8个FF4含量的8个F邻叶,低于35摩尔%。随着碱性离子A(a = li +,Na +,k +)的尺寸增加,该值降低至7。 [MFX](4-X)物种通过桥接氟离子与形成长链[MXFY](4x-Y)相连。将少量UF4加入到共晶LiF-THF4组合物(77.5mol% - 22.5mol%),导致由于TH-F链路的击穿而略微增加游离氟离子的群体以形成复合物[ UFX](4-X)分离或连接到(THXFY)(4x-Y)链。液体结构的这种变化导致几摩尔的粘度略微降低。添加了UF4的%。 (c)2020由elsevier b.v发布。

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