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Ilmenite Magnetizing Roast — Reduction & Magnetic Separation (2D)

A 2D reduction-roast kiln converts non-magnetic ilmenite (FeTiO3) grain-by-grain into magnetite via Arrhenius kinetics, then a magnetic separator splits the roasted stream into a magnetic concentrate and non-magnetic tailings so you can see the real recovery-versus-grade tradeoff.

Chemistry & Materials2DModerate60 FPS📱 Mobile-adapted🌍 Earth⇄ 3D version
2d-ilmenite-roast-magnetic-upgrade ↗ Open standalone

A companion to the 3D smelter view: watch ilmenite grains convert to magnetite in a reduction-roast kiln under Arrhenius kinetics, then pass through a magnetic separator whose field strength trades off Fe recovery against concentrate grade.

⚙ Under the hood

A 2D companion to the 3D ilmenite roast smelter: a reduction-roast kiln converts non-magnetic ilmenite (FeTiO3) grains toward magnetite via CO/H2 gas under first-order Arrhenius kinetics (k = k0*gasFactor*exp(-Ea/RT), X(t) = 1-exp(-kt)), with each grain scattering around the batch mean conversion the way real uneven heat and gas contact would. The roasted stream then flows into a magnetic separator whose field-strength slider sets how weak a magnetic pull still gets a grain deflected into the magnetic concentrate bin versus falling to tailings, making the real recovery-versus-grade tradeoff visible live.

Ilmenite RoastingMagnetizing RoastReduction KineticsArrhenius EquationMagnetic SeparationTitanium Ore2D

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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