CO2-to-Polyol Copolymerization Reactor (2D)
Interactive 2D simulator of catalytic CO2/epoxide ring-opening copolymerization — watch a growing polymer chain alternate carbonate and ether linkages as you tune CO2 pressure, temperature and epoxide type, drag-to-pan and scroll-to-zoom the chain, and read live carbonate content, chain length and molecular weight.
Captured CO2 is not only stored underground — catalytic chemistry can lock it directly into everyday materials. This simulator models the ring-opening copolymerization of CO2 with an epoxide over a single metal catalyst center: at each step the catalyst inserts either a CO2 molecule (forming a carbonate linkage) or another epoxide unit (an ether "defect"), with the odds set by real Arrhenius kinetics that respond to CO2 pressure, temperature, and the steric bulk of the chosen epoxide. Watch the polymer chain grow monomer by monomer in a free-pan, free-zoom 2D view, track live CO2 incorporation, chain length, and estimated molecular weight, and see how excessive heat or too little CO2 pressure triggers a back-biting side reaction that truncates the chain — exactly the trade-off industrial CO2-based polyol and polycarbonate producers have to manage.
Watch a metal catalyst alternately insert CO2 and epoxide monomers into a growing polymer chain in a free-pan, free-zoom 2D view, with real Arrhenius kinetics driving CO2 incorporation, chain length, and back-biting termination as you tune pressure, temperature, and epoxide type.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install