The Bachelor of Science in Chemical Engineering at the University of Texas at Austin equips students with the knowledge and skills to tackle critical challenges in energy, environment, and materials. The program emphasizes hands-on design, simulation, and lab experimentation grounded in strong theoretical principles.
Designing a Continuous Biodiesel Production Plant
Simulation of Heat Exchangers in Industrial Applications
Catalytic Converters: Optimizing Emission Reduction Efficiency
Development of a Microreactor for Chemical Synthesis
Carbon Capture and Storage in Petrochemical Industries
Wastewater Treatment Using Advanced Oxidation Processes
Modeling and Control of a Batch Distillation Column
Design of a Membrane-Based Desalination System
Techno-Economic Analysis of Solar Hydrogen Production
Studying the Kinetics of Enzymatic Reactions in Bioreactors
Heat Transfer Enhancement Using Nanofluids
Using Aspen Plus to Simulate Ammonia Production
Designing a Safer Process for Acetone Manufacturing
Green Alternatives to Petrochemical-Based Plastics
Optimization of Polymerization Reaction Parameters
Thermodynamic Modeling of Multicomponent Systems
Process Control System for a Chemical Reactor Loop
Integration of Renewable Energy in Chemical Plants
Supercritical CO₂ Extraction for Herbal Oils
Bioethanol Production from Agricultural Waste
Developing a Low-Emission Fertilizer Manufacturing Process
Chemical Risk Assessment and Safety Analysis Framework
Design of an Industrial Air Pollution Control System
Reactive Absorption for CO₂ Removal from Flue Gas
Evaluating Corrosion Behavior in Harsh Chemical Environments
Innovate sustainable processes and optimize industrial efficiency with UT Austin’s chemical engineering education and lab experience.
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