Hydrothermal Vent Chemosynthesis: The Mixing-Zone Habitat
Interactive 3D model of the sulfide-oxidizing mixing zone around a deep-sea hydrothermal vent: dual-substrate (H2S + O2) Monod kinetics carve out a goldilocks shell around the plume where chemosynthetic bacterial mats can grow.
Around every deep-sea hydrothermal vent, sulfide-oxidizing bacteria make a living without sunlight by oxidizing hydrogen sulfide with dissolved oxygen. The catch is that the vent supplies H₂S but no O₂, and the surrounding ocean supplies O₂ but no H₂S — so the reaction can only proceed in the turbulent shell where the two plumes mix. This simulator renders that mixing zone in 3D from dual-substrate Monod kinetics, letting you tune the vent's sulfide flux, the ambient oxygen level and the turbulent mixing rate and watch the chemosynthetic bacterial mat's habitable shell — and its live biomass — respond in real time.
Model the sulfide-oxidizing mixing zone around a hydrothermal vent, where dual-substrate H2S + O2 Monod kinetics carve out a goldilocks shell in which chemosynthetic bacterial mats can grow.
3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install