UC ChemE integrates thermodynamics, reaction engineering, and process control. Students pilot carbon-capture reactors and optimize bio-refineries in award-winning capstones.
Aspen-Plus simulation of green ammonia synthesis via electrolytic hydrogen
Techno-economic analysis of algae-based jet-fuel production
Membrane-separation prototype removing PFAS contaminants from water
Dynamic-control PID strategy for exothermic polymerization safety
Life-cycle assessment comparing lithium vs. sodium-ion battery cathodes
Computational fluid-dynamics model of packed-bed catalytic reformer
Policy brief on carbon border-adjustment mechanisms for heavy industry
Supercritical CO₂ extraction of botanicals for food flavoring
AI-driven predictive maintenance of refinery heat-exchanger fouling
Nanoporous adsorbent synthesis for direct air CO₂ capture
Pilot-scale fermentation optimizing bio-based succinic acid yield
VR operator training for chemical-plant emergency shutdowns
H₂ leak detection sensor using palladium-nanowire networks
Crowdsourced database of solvent substitution for green chemistry
Reaction-kinetics study of catalytic plastic depolymerization
Interactive outreach kit demonstrating fluidized-bed principles
Process-intensification design of rotating packed-bed absorber
Network analysis of global ammonia supply and food security
Tech brief on molten-salt reactors as process-heat source for chem plants
Critical essay on just transition for fossil-fuel workforce
Transform raw materials into sustainable solutions with UC ChemE.
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