UNC’s MS in Chemical Engineering immerses students in catalysis, polymer science, and process systems engineering. Research labs leverage in-situ spectroscopy, high-pressure supercritical reactors, and AI-accelerated molecular modeling to tackle green hydrogen production and circular-plastics design. Industry partnerships with SAS and Novozymes enable data-rich process intensification projects and enzyme-catalyzed manufacturing.
MOF-supported catalyst for low-temperature CO₂ hydrogenation
Life-cycle assessment comparing bio-based vs petrochemical PET
CFD simulation optimizing airflow in continuous-flow photoreactors
Enzyme-engineering pipeline improving lignocellulose depolymerization
Electrochemical nitrogen-reduction cell using earth-abundant metals
Machine-learning model predicting polymer glass-transition temps
Reactive-distillation design for biomass-derived jet fuel
Operando Raman study of solid-electrolyte interphases in batteries
Grant proposal for microalgae-based wastewater nutrient recovery
Policy brief on PFAS destruction technologies and regulatory gaps
Process-control algorithm reducing steam cracker energy use
White paper on carbon capture integration in cement plants
3-D printed microreactor for rapid catalyst screening
Public outreach kit on household plastics upcycling
Podcast interviewing innovators in green ammonia synthesis
Engineer cleaner, smarter, and circular chemical processes.
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