Electrochemical Behavior of Chromium Difluoride in Molten Lithium and Beryllium Fluoride Mixtures

Author:

Arkhipov Stepan P.ORCID,Zaikov Yury P.ORCID,Arkhipov Pavel A.ORCID,Mullabaev Albert R.ORCID

Abstract

The interaction between CrF2 and a molten binary LiF-BeF2 mixture has been studied using the electrochemical methods. The polarization of the chromium electrode relative to the dynamic beryllium electrode was measured. The obtained voltammetry data elucidates that under the experimental conditions, chromium is observed exclusively in one valence form. According to the cathode polarization dependences, it is established that the reduction of chromium ions in the metal occurs by a two-electron electrode reaction. The equilibrium concentrations of chromium were experimentally measured at the temperatures of 923, 973, and 1023 K at different chromium fluoride concentrations in the melt. The oxidation degree of chromium, dissolved in the melt, was calculated according to the concentration dependences of the equilibrium potentials. A thermodynamic analysis of the chromium difluoride dissolution in a molten mixture of lithium and beryllium fluorides was performed. The formation of dilute solutions of chromium difluoride is accompanied by slight deviations of the salt system from Raoult’s laws.

Publisher

The Electrochemical Society

Subject

Materials Chemistry,Electrochemistry,Surfaces, Coatings and Films,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials

Reference43 articles.

1. Recent progress in molten salt reactor development;Glassner,1958

2. Status of materials development for molten salt reactor;Mc Coy,1978

3. Nekotoriye problem khimii zhidkosolevykh yadernykh reactorov novogo pokoleniya (Some problems of chemistry of molten salt nuclear reactors of new generation;Zaikov

4. Reactor with Circulating Fuel Based on Molten Metal Fluorides for Np, Am, Cm Incineration;Ignatiev;At. Energy,2021

5. Accident resistance of molten-salt nuclear reactor;Ignat’ev;At. Energ.,2018

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