AbstractApplication of mole fractions and volume ones for creation of mathematical model for extraction processes with TBP was discussed. Method for calculating activity coefficients was provided. Water distribution was taken into account due to the significant importance of free water. Calculation of activity coefficients in three major systems, namely: H2O-TBP, H2O-HNO3-TBP-diluent, H2O-UO2(NO3) 2-TBP was performed. Information on experimental data and optimization criterion was provided. It shown that new method can provide adequate description of the system H2O-HNO3-UO2(NO3) 2-TBP-diluent and its subsystems. Three major potential challenges have been identified
Uranil nitrat ve nitrik asidin, sulu çözelti ve tribütil fosfat (TBP) arasındaki dağılım dengesini a...
International audienceFor improving hydrometallurgical approaches such as solvent extraction, it is ...
AbstractThe amounts of extracted water, nitric acid and uranyl nitrate by organic phases of 0.5mol.L...
AbstractApplication of mole fractions and volume ones for creation of mathematical model for extract...
The speciation of hexavalent U and tetravalent Pu will be examined in the TBP-dodecane- nitric acid ...
Uranium is a strategic element and plays an important role in energy resources. A H2O-HNO3-UO2(NO3)(...
A mathematical model founded on the equilibrium constants expressions has been developed for the sim...
The speciation of hexavalent U and tetravalent Pu will be examined in the TBP-dodecane-nitric acid s...
A mathematical model developed for the equilibrium HNO3-UO2(NO3)(2)-tri-n-butyl phosphate (TBP)-dilu...
In the framework of development of new processes for spent nuclear fuel reprocessing, new extractant...
Solvent extraction models as the ones developed by the CEA required a precise description of extract...
International audienceFuture nuclear fuel reprocessing will require new extracting molecules exhibit...
AbstractThis study focuses on thorium extraction modelling by a 30%vol TBP in TPH diluent, to simula...
The research objectives of this project are as follows: To determine the influence of nitrate on t...
The distribution of 0-8 M HNO3 between aqueous and 5- 100 vol % solutions of TBP in Amsco 125-82 has...
Uranil nitrat ve nitrik asidin, sulu çözelti ve tribütil fosfat (TBP) arasındaki dağılım dengesini a...
International audienceFor improving hydrometallurgical approaches such as solvent extraction, it is ...
AbstractThe amounts of extracted water, nitric acid and uranyl nitrate by organic phases of 0.5mol.L...
AbstractApplication of mole fractions and volume ones for creation of mathematical model for extract...
The speciation of hexavalent U and tetravalent Pu will be examined in the TBP-dodecane- nitric acid ...
Uranium is a strategic element and plays an important role in energy resources. A H2O-HNO3-UO2(NO3)(...
A mathematical model founded on the equilibrium constants expressions has been developed for the sim...
The speciation of hexavalent U and tetravalent Pu will be examined in the TBP-dodecane-nitric acid s...
A mathematical model developed for the equilibrium HNO3-UO2(NO3)(2)-tri-n-butyl phosphate (TBP)-dilu...
In the framework of development of new processes for spent nuclear fuel reprocessing, new extractant...
Solvent extraction models as the ones developed by the CEA required a precise description of extract...
International audienceFuture nuclear fuel reprocessing will require new extracting molecules exhibit...
AbstractThis study focuses on thorium extraction modelling by a 30%vol TBP in TPH diluent, to simula...
The research objectives of this project are as follows: To determine the influence of nitrate on t...
The distribution of 0-8 M HNO3 between aqueous and 5- 100 vol % solutions of TBP in Amsco 125-82 has...
Uranil nitrat ve nitrik asidin, sulu çözelti ve tribütil fosfat (TBP) arasındaki dağılım dengesini a...
International audienceFor improving hydrometallurgical approaches such as solvent extraction, it is ...
AbstractThe amounts of extracted water, nitric acid and uranyl nitrate by organic phases of 0.5mol.L...