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April 15, 2026Ironmaking & Steelmaking Processes Products and Applications0 citations

Iron recovery from electric arc furnace slag: Characterisation and optimisation of magnetic separation

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AKAli KeramatianMAMehdi AlizadehANAhmad Reza Nazari

Key Points

  • The central aim is to characterise electric arc furnace slag and optimise iron recovery through magnetic separation.
  • Characterised chemical and mineralogical properties of EAF slag from Mobarakeh Steel Company.
  • Conducted chemical analysis revealing total iron content and mineral composition.
  • Optimised grinding processes to achieve finer particle size for better separation.
  • Evaluated magnetic separation techniques to enhance iron recovery rates.
  • Achieved a reduction in particle size (d80) from 870 to 77 µm through ball-mill grinding.
  • Optimised wet magnetic separation at 1700 G resulted in an iron grade increase to 49.20%.
  • Identified significant mineral phases such as wüstite, magnetite, and metallic iron interlocked with silicate gangue.

Abstract

Electric Arc Furnace (EAF) steelmaking slag is an industrial by-product containing significant iron and other valuable elements. This study investigated slag from Mobarakeh Steel Company to characterise its chemical and mineralogical properties, optimise grinding and evaluate iron recovery by magnetic separation. Chemical analysis indicated 27.01% total iron (20.78% Fe 2 + , 5.33% Fe 3 + and 0.90% metallic Fe). XRD identified wüstite, magnetite, merwinite and gehlenite as dominant minerals. Optical microscopy and SEM–EDS showed that magnetite and metallic iron are finely interlocked with silicate gangue, limiting liberation. Ball-mill grinding reduced d80 from 870 to 77 µm. Magnetic separation revealed that wet separation at 1700 G for 77 µm particles was optimal, increasing the iron grade to 49.20%. The results highlight the potential of combined grinding and magnetic separation for efficient iron recovery from EAF slag.

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Cite This Study

Keramatian et al. (2026) studied this question.

synapsesocial.com/papers/69df2b2ce4eeef8a2a6b01e6https://doi.org/10.1177/03019233261440984
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