Amorphous PET (degradable) Crystalline PET (resistant) Enzyme molecule TPA / EG monomer
⚠ Couldn't load the 3D engineThree.js failed to load from the CDN. Check your connection and reload.

Engineered PET Hydrolase: Plastic Depolymerization

This simulator models a real synthetic-biology bioremediation strategy: an engineered PET hydrolase enzyme, of the family that includes FAST-PETase and LCC-ICCG, chewing through a solid block of polyethylene terephthalate one ester bond at a time. Enzyme molecules diffuse in 3D around a lattice representing the polymer, homing in on exposed surface units and cleaving them into terephthalic acid and ethylene glycol monomers that drift away as the block visibly erodes. The reaction rate follows the Daniel–Danson equilibrium model — an Arrhenius catalytic term multiplied by a reversible thermal-unfolding term — so the temperature slider produces a genuine activity optimum rather than a monotonic speed-up, while the crystallinity slider reproduces the real-world fact that amorphous PET degrades far faster than crystalline PET.