Rhenium Roaster Offgas: Volatilization & Scrubber Capture (2D)
2D rhenium-recovery lab: model Re2O7 volatilization from molybdenite roasting off-gas against roast temperature and oxygen excess, then track scrubber capture with an exponential liquid-to-gas absorption model as particles flow from furnace to stack.
This 2D companion reduces the same rhenium-recovery circuit as the 3D roaster to two coupled models you can actually read: a temperature/oxygen-driven volatilization curve for Re2O7 leaving the molybdenite calcine, and a liquid-to-gas gas-absorption curve for how much of that volatilized rhenium the scrubber actually wets before the stack. A live particle stream shows the split at every stage — furnace, duct, scrubber, stack — while a sensitivity plot traces volatilization against temperature so the effect of each slider is visible immediately, not just reported as a number.
2D rhenium-recovery lab: model Re2O7 volatilization from molybdenite roasting off-gas against roast temperature and oxygen excess, then track scrubber capture with an exponential liquid-to-gas absorption model as particles flow from furnace to stack.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install