Abstract The thermodynamic behaviors of lanthanides in molten salt are significant for the pyroprocessing of spent nuclear fuel. In this study, the ternary phase diagram of LiCl-KCl-GdCl 3 system was… Click to show full abstract
Abstract The thermodynamic behaviors of lanthanides in molten salt are significant for the pyroprocessing of spent nuclear fuel. In this study, the ternary phase diagram of LiCl-KCl-GdCl 3 system was assessed by the CALPHAD method using two-sublattice model. The liquidus surfaces were calculated and plotted from 720 K to 1000 K. The solubility of GdCl 3 from 720 K to 850 K was determined from the phase diagram developed. The activity coefficient and apparent potential of GdCl 3 with a concentration up to 3 mol% were also investigated. They both show a dependence on the concentration. From 0 to 3 mol%, the apparent potential increases by about 3% and the activity coefficient increases by about 50%.
               
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