Journal of Nuclear Fuel Cycle and Waste Technology 2006;4(4):335-344. Published online: Dec, 30, 2006
In this paper a computer program was developed, which simulates the Li reduction process of PWR spent fuel, and the amount of a produced metal or chloride compound was calculated at the various amount of Li with the program. It establishes a database, which is composed of some characteristics related to a chemical reaction equation and thermodynamic data, and it calculates the transformed rate of PWR spent fuel oxide at the certain amount of Li by using the database as input data. As the results of the performance test of the program, it was validated that the transformed values of oxides, except for Eu2O3 and Sm2O3, were almost the same to within about a 6 % error with those calculated by the previous code and that the calculated amount of Li was also exactly consistent with the theoretical one, which is used for a complete reaction of each oxide in a single chemical reaction. A relationship between Li and the transformed metal of each oxide was analyzed on the basis of the quantities calculated with the verified development program. Of the results, when the amount of Li was given to be 250 mole, the 83.73 percentage of UO2 was transformed into U while the remainder was still to be UO2. In addition, it was appeared that the 297 mole of Li was needed to completely convert UO2 into U.
Keywords
Li reduction,PWR Spent Fuel,chemical equilibrium,metalization