Yuhan Sun, Henri Pauna
Ilmenite is a critical resource in the titanium and steel industries. To reach climate neutrality, hydrogen is being explored as an alternative energy source and reductant to replace traditional carbon-based materials. In this context, hydrogen plasma smelting reduction has emerged as a potential method for reducing even chemically very stable oxides. This study presents five ilmenite reduction experiments performed using hydrogen plasma smelting reduction at varying reduction times. Optical emission spectroscopy and video recording were employed as in-situ analytical monitoring and reductant species probing methods for each experiment. The hydrogen plasma reactor was operated with a gas mixture of 10% H₂ and 90% Ar. Samples were reduced under this plasma environment for durations ranging from 150 to 750 s, with spectral analysis covering the wavelength range of 200–700 nm. Plasma composition was determined by identifying characteristic emission lines, and the time evolution of elemental intensities was examined. Plasma images were used to assess the temporal behavior of the plasma arc, complementing the optical emission spectroscopy analysis. Titanium oxide was successfully extracted from FeTiO3 as TiO2 and became the enriched component in the slag. Metal recovery exceeded 70 wt.% after 750 s of reduction, while the iron content in the metallic droplet reached 92.31 wt.%, and O and Si decreased to 6.84wt.% and 0.37wt.%, respectively, after 600 s.
@article{86f7521b-a24f-4854-88ea-91ce19966fe0,
title={2025 Sun Hydrogen Plasma Ilmenite Reduction},
author={Yuhan Sun and Henri Pauna},
year={2026},
language={en}
}TY - JOUR TI - 2025 Sun Hydrogen Plasma Ilmenite Reduction AU - Yuhan Sun AU - Henri Pauna PY - 2026 LA - en ER -
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