Toshihide TAKENAKA, Nao MURAKAMI
Electrowinning of Ti has been investigated in a LiF-NaF-KF melt including K2TiF6 at 773-923K by applying electrochemical oxidation of H2 gas as an anodic reaction. The cathodic behavior of titanium and the anodic behavior of H2 gas were studied by voltammetry in detail to clarify the electrolytic condition for the process. The electrowinning of Ti was carried out by potentiostatic electrolysis. Steady electrolysis was achieved under the suitable electrolytic condition without breaking out the anode effect. Titanium metal was electrodeposited on a Ti cathode though the deposits were usually powdery. It is concluded that this process is potential if the morphology of the deposit can be improved.
@article{3a805660-5489-4c64-be4c-d9307c5b17bc,
title={ELECTROWINNING OF TITANIUM IN FLUORIDE MELT BY USING HYDROGEN GAS OXIDATION AS ANODIC REACTION},
author={Toshihide TAKENAKA and Nao MURAKAMI},
year={2026},
language={en}
}TY - JOUR TI - ELECTROWINNING OF TITANIUM IN FLUORIDE MELT BY USING HYDROGEN GAS OXIDATION AS ANODIC REACTION AU - Toshihide TAKENAKA AU - Nao MURAKAMI PY - 2026 LA - en ER -
Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle
Roger Rumbu
KAFUMBILA KASONTA JOSEPH
During the design of Cobalt solvent extraction using Cyanex 272 as extractant, the presence of Magnesium in the solvent extraction feed solution makes
Raven Wuebker
This article reports recent advances in the development of polymer–air batteries as safer, more sustainable alternatives to conventional metal–air and