The BS in Chemical Engineering at the University of Florida prepares students to address industrial and environmental challenges by combining chemistry, process engineering, and material science. Students gain expertise in thermodynamics, fluid mechanics, chemical kinetics, and reactor design. With opportunities for hands-on lab work, internships, and faculty-guided research, graduates are equipped to work in energy, pharmaceuticals, food processing, or pursue graduate education in advanced process design.
Design and simulation of a bio-ethanol production plant from agricultural waste using Aspen Plus
Development of a membrane-based carbon capture system for reducing emissions in cement manufacturing
Kinetic modeling and reactor design for the catalytic conversion of methane to methanol
Development of biodegradable plastic alternatives using starch-based polymers
Process intensification strategies in ammonia production for green fertilizer
Design of a microreactor system for continuous pharmaceutical manufacturing
Energy optimization and waste heat recovery in an oil refinery process
Modeling and scaling up of a water desalination plant using reverse osmosis
Design of a pilot-scale biodiesel production unit from used cooking oil
Nanomaterials for enhanced hydrogen storage and fuel cell efficiency
Heat exchanger network optimization using pinch analysis for a multi-stream system
Design of a multi-effect evaporator system for sustainable sugar concentration
Electrochemical reactor design for wastewater treatment and heavy metal removal
Risk and safety assessment in chemical plant operations using HAZOP methodology
Computational fluid dynamics (CFD) modeling of turbulent flow in process pipelines
Advanced control strategies for continuous stirred tank reactors (CSTR)
Development of a real-time sensor system for leak detection in chemical storage tanks
Chemical process simulation and lifecycle analysis for ethanol-blended fuels
Design of a chemical scrubber system to reduce SO₂ and NOx in industrial exhausts
Sustainable surfactant formulation using green chemistry principles for detergent manufacturing
Solve complex industrial problems with chemical innovation and sustainable design.
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