Electrochemistry of actinides and fission products in molten salts—Data review
J Zhang - Journal of Nuclear Materials, 2014 - Elsevier
The thermodynamic and electrochemical properties of actinides and fission products in the
molten salt determine the pyroprocessing separation performance. Extensive measurements …
molten salt determine the pyroprocessing separation performance. Extensive measurements …
A comparison of square-wave voltammetry models to determine the number of electrons exchanged in metal deposition
A comparison of square-wave voltammetry models for calculating the number of electrons
exchanged in a metal deposition reaction. Experiments were conducted for silver deposition …
exchanged in a metal deposition reaction. Experiments were conducted for silver deposition …
Electrochemical behavior of LaCl3 and morphology of La deposit on molybdenum substrate in molten LiCl–KCl eutectic salt
H Tang, B Pesic - Electrochimica Acta, 2014 - Elsevier
The electrochemical behavior of LaCl 3 dissolved in molten LiCl–KCl eutectic salt was
studied in the temperature range of 693–823 K by using inert electrodes, Mo as the cathode …
studied in the temperature range of 693–823 K by using inert electrodes, Mo as the cathode …
Electrochemical recovery of UO2 from LiCl-KCl-UO2F2 molten salt
W Han, X Feng, Y Wang, R Liu, M Zhang… - Separation and Purification …, 2023 - Elsevier
To recover UO 2 from LiCl-KCl-UO 2 F 2 molten salt, the electrochemical behavior of UO 2
2+ and nucleation mechanism of UO 2 were studied by a series of electrochemical …
2+ and nucleation mechanism of UO 2 were studied by a series of electrochemical …
Electroanalytical measurements of lanthanum (III) chloride in molten calcium chloride and molten calcium chloride and lithium chloride
M Schvaneveldt, R Fuller, D Rappleye - Journal of Electroanalytical …, 2022 - Elsevier
Cyclic voltammetry (CV), square wave voltammetry (SWV) and other electroanalytical
methods have been applied to molten chloride salts to study metal ion behavior. These …
methods have been applied to molten chloride salts to study metal ion behavior. These …
Electrochemical behaviour of LaCl3 at tungsten and aluminium cathodes in LiCl–KCl eutectic melt
S Vandarkuzhali, N Gogoi, S Ghosh, BP Reddy… - Electrochimica …, 2012 - Elsevier
The electrochemical behaviour of lanthanum was studied at inert tungsten electrode and
reactive aluminium electrode in LiCl–KCl eutectic melt in the temperature range 698–798K …
reactive aluminium electrode in LiCl–KCl eutectic melt in the temperature range 698–798K …
Cathodic behaviour of europium (III) on glassy carbon, electrochemical formation of Al4Eu, and oxoacidity reactions in the eutectic LiCl–KCl
MR Bermejo, F De la Rosa, E Barrado… - Journal of …, 2007 - Elsevier
The electrochemical redox process Eu (III)/Eu (II) in the temperature range 673–823K on
glassy carbon was studied by using transient electrochemical techniques. The results …
glassy carbon was studied by using transient electrochemical techniques. The results …
Investigation on the electrochemical behavior of neodymium chloride at W, Al and Cd electrodes in molten LiCl-KCl eutectic
S Vandarkuzhali, M Chandra, S Ghosh, N Samanta… - Electrochimica …, 2014 - Elsevier
Electrochemical behavior of neodymium (III) ion was studied in LiCl-KCl eutectic melt in the
temperature range 723-798 K on inert tungsten electrode using various transient …
temperature range 723-798 K on inert tungsten electrode using various transient …
Electrochemistry of terbium in the eutectic LiCl–KCl
MR Bermejo, J Gomez, AM Martinez, E Barrado… - Electrochimica …, 2008 - Elsevier
The electrochemical behaviour of terbium at a tungsten electrode, in the eutectic LiCl–KCl
molten was investigated in the temperature range 673–823K, by means of cyclic …
molten was investigated in the temperature range 673–823K, by means of cyclic …
Electrochemistry of thulium on inert electrodes and electrochemical formation of a Tm–Al alloy from molten chlorides
The electrochemical behaviour of TmCl3 solutions was studied in the eutectic LiCl–KCl in
the temperature range 673–823K using inert and reactive electrodes, ie W and Al …
the temperature range 673–823K using inert and reactive electrodes, ie W and Al …