The construction of an interaction potential for mixtures of LiF, NaF, KF and ZrF 4 on a purely first-principles basis is described. Many-body interactions are included via a polarization term. The predictions of the heat-transfer properties of two mixtures, LiF-NaF-KF (FLiNaK) and NaF-ZrF 4, are then compared with experimental values. Values for the densities, thermal expansions, heat capacities and viscosities are compiled into figures of merits in order to compare the suitability of those molten salts to serve as primary or secondary coolants in a nuclear reactor. © 2008 Elsevier B.V. All rights reserved
CALPHAD models to compute the density and viscosity of four keystone systems related to Molten Salt ...
Molten salt advanced nuclear reactor design concepts have proposed to utilize molten salts as both a...
Using the modified quasi-chemical model in the quadruplet approximation, three new thermodynamic ass...
The construction of an interaction potential for mixtures of LiF, NaF, KF and ZrF ...
International audienceMolten fluorides are known to show favorable thermophysical properties which m...
This work is a critical review of the chemical¿physical properties of the fluoride salts of interest...
The concept of the Molten Salt Reactor, one of the so-called Generation IV future reactors, is that ...
Fluoride salts are crucial to achieving the benefits of Fluoride-salt-cooled High-temperature Reacto...
The framework of this study is the potential use of molten salts in the nuclear industry of the fut...
The molten salt reactor (MSR) is one of the six reactor concepts of the Generation IV initiative, a...
A polarizable ionic interaction potential, constructed from first-principles calculations, is used t...
Molten salts are considered within the Very High Temperature Reactor program as heat transfer media ...
Molten salt reactors have seen an insurgence of interest and studies because of their high efficienc...
The Molten Salt Reactor (MSR) has been selected as one of the Generation IV nuclear systems. The ver...
Molten Salt Reactors (MSRs) are one of the six Gen (IV) reactor designs chosen by the Generation IV ...
CALPHAD models to compute the density and viscosity of four keystone systems related to Molten Salt ...
Molten salt advanced nuclear reactor design concepts have proposed to utilize molten salts as both a...
Using the modified quasi-chemical model in the quadruplet approximation, three new thermodynamic ass...
The construction of an interaction potential for mixtures of LiF, NaF, KF and ZrF ...
International audienceMolten fluorides are known to show favorable thermophysical properties which m...
This work is a critical review of the chemical¿physical properties of the fluoride salts of interest...
The concept of the Molten Salt Reactor, one of the so-called Generation IV future reactors, is that ...
Fluoride salts are crucial to achieving the benefits of Fluoride-salt-cooled High-temperature Reacto...
The framework of this study is the potential use of molten salts in the nuclear industry of the fut...
The molten salt reactor (MSR) is one of the six reactor concepts of the Generation IV initiative, a...
A polarizable ionic interaction potential, constructed from first-principles calculations, is used t...
Molten salts are considered within the Very High Temperature Reactor program as heat transfer media ...
Molten salt reactors have seen an insurgence of interest and studies because of their high efficienc...
The Molten Salt Reactor (MSR) has been selected as one of the Generation IV nuclear systems. The ver...
Molten Salt Reactors (MSRs) are one of the six Gen (IV) reactor designs chosen by the Generation IV ...
CALPHAD models to compute the density and viscosity of four keystone systems related to Molten Salt ...
Molten salt advanced nuclear reactor design concepts have proposed to utilize molten salts as both a...
Using the modified quasi-chemical model in the quadruplet approximation, three new thermodynamic ass...