UC’s MS in Chemical Engineering equips engineers to optimize reactions, materials, and energy systems for a low-carbon future.
Heterogeneous catalyst synthesizing green ammonia via electrochemical N₂ reduction
Dynamic-simulation model of CO₂ capture unit integrated with natural-gas power plant
Process-intensification design for modular biorefinery converting agricultural waste to ethanol
CFD analysis of turbulent mixing in continuous-flow pharmaceutical reactors
Machine-learning optimization of polymerization kinetics for biodegradable plastics
Techno-economic assessment of hydrogen production via solar thermochemical cycles
Membrane separation unit scaling for lithium extraction from brines
AI-driven soft sensor estimating viscosity in real-time asphalt processing
Life-cycle carbon analysis comparing solid-state battery chemistries
Lab-scale demonstration of algal photobioreactors for wastewater nutrient recovery
Surfactant formulation enhancing CO₂ foam mobility for enhanced oil recovery
Dynamic control strategy minimizing flaring in petrochemical complexes
Nano-engineered adsorbent for point-of-use arsenic removal in drinking water
Heat-integrated distillation column design reducing steam consumption by 40 %
Safety HAZOP study of bio-SAF (sustainable aviation fuel) pilot plant
Computational screening of MOFs for methane storage in heavy-duty vehicles
Pilot-scale fermentation converting CO-rich syngas to bio-acrylic acid
Outreach module on process-safety culture for undergraduate labs
Policy brief on incentives for industrial carbon-utilization projects
Conference on circular-chemicals manufacturing and waste valorization
Engineer sustainable processes with UC’s industry-connected MS.
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