Influence of Chromite Ore Selection on the Pelletized Oxidative Sintering Process: A South African Case Study
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Abstract
The smelting of chromite to produce ferrochrome (FeCr) and subsequently, stainless steel, is
an energy-intensive carbothermic process. Various countries apply the Outotec FeCr process, which
employs oxidative sintering in air to produce mechanically strong chromite pellets. During this
process, iron (Fe) is liberated from the chromite spinel due to the elevated temperatures and oxidative
nature of the process. It is well understood that oxidatively altered chromite requires less energy to be
smelted when compared to non-oxidized chromite. This study showed that sintered pellets obtained
from five South African pellet sintering plants had vastly different oxidative alteration penetrations.
Additionally, sintered pellets from the same plant may also vary significantly. It was further shown
that ores mined from various locations in South Africa had dissimilar sintering behaviors, suggesting
that sintered pellets should be characterized before smelting to determine the extent of oxidative
alteration. The benefit of a smelter consuming oxidized ore was also demonstrated by
Sustainable Development Goals
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1 Chemical Resource Beneficiation, North-West University, Potchefstroom 2531, South Africa;
yolindivanstaden@outlook.com (Y.v.S.); pieter.vanzyl@nwu.ac.za (P.G.v.Z.);
groenewald.jason@gmail.com (J.G.)
2 Hydrogen South Africa (HySA) Infrastructure, Faculty of Engineering, North-West University,
Potchefstroom 2531, South Africa
Citation
van Staden, Y.; du Preez, S.P.; Beukes, J.P.; van Zyl, P.G.; Groenewald, J. Influence of Chromite Ore Selection on the Pelletized Oxidative Sintering Process: A South African Case Study. Minerals 2024, 14, 1203. https://doi.org/10.3390/ min14121203
