Journal of Alloys and Compounds 2018-04-06

Experimental investigation and thermodynamic modelling of LiF-NdF3-DyF3 system

A. Abbasalizadeh, S. Sridar, Z. Chen, M. Sluiter, Y. Yang, J. Sietsma, S. Seetharaman, K.C. Hari Kumar

Index: 10.1016/j.jallcom.2018.04.013

Full Text: HTML

Abstract

Electrolysis of molten fluorides is one of the promising methods for the recovery and recycling of rare earth metals from used magnets. Due to the dearth of phase equilibria data for molten fluoride systems, thermodynamic modelling of LiF-DyF3-NdF3 system using the CALPHAD approach was carried out. Gibbs energy modelling for LiF-NdF3 and LiF-DyF3 systems was performed using the constitutional data from literature. Ab initio calculations were used to obtain enthalpy of reaction of LiDyF4, an intermediate phase that is found to exist in the LiF-DyF3 system. Differential thermal analysis was carried out for selected compositions in the NdF3-DyF3 system, in order to determine liquidus and solidus temperatures. The Gibbs energy parameters for the limiting binaries determined in this work is used for modelling the Gibbs energy functions of equilibrium phases in the ternary system. Selected compositions of LiF-NdF3-DyF3 were subjected to DTA in order to validate the calculated phase temperatures involving melt.

Latest Articles:

Protein-based carbon and platinum nanocomposites as electrocatalysts for methanol oxidation activity

2018-04-11

[10.1016/j.jallcom.2018.04.061]

Effect of Na ions in plating baths on coercivity of electroplated Fe-Pt film-magnets

2018-04-11

[10.1016/j.jallcom.2018.04.126]

Bamboo prepared carbon quantum dots (CQDs) for enhancing Bi3Ti4O12 nanosheets photocatalytic activity

2018-04-10

[10.1016/j.jallcom.2018.04.085]

Twisted nanocolumns for LIBs via phi-sweep method in ion assisted e –beam deposition

2018-04-09

[10.1016/j.jallcom.2018.04.095]

Facile synthesis of Au@α-Fe2O3@RGO ternary nanocomposites for enhanced electrochemical sensing of caffeic acid toward biomedical applications

2018-04-07

[10.1016/j.jallcom.2018.04.052]

More Articles...