Mass Transfer Course
Gain mastery over mass transfer principles in packed columns for VOC stripping applications. Develop 1-D mass balance models, apply Henry’s law and key coefficients like kL, kG, and K, and perform design calculations to optimize column dimensions, pressure drop, and removal efficiency for practical engineering challenges. Through structured examples and numerical methods, you'll confidently predict performance and assess trade-offs in real-world scenarios.

4 to 360h flexible workload
certificate valid in your country
What will I learn?
This course equips you with essential tools to model and optimize VOC stripping processes in packed columns. You'll explore phase equilibrium, Henry’s law, two-film theory, and critical mass transfer coefficients, while developing 1-D mass balance models for both gas and liquid phases. Hands-on examples, design correlations, and basic numerical techniques will empower you to forecast removal efficiency and evaluate design trade-offs with confidence.
Elevify advantages
Develop skills
- Develop 1-D mass balance models for VOC stripping with defined assumptions.
- Design packed-column gas strippers using actual kL, kG, and specific surface area data.
- Analyze mass transfer using Henry’s law, film theory, and dimensionless parameters.
- Solve coupled gas-liquid ODEs numerically in spreadsheets or scripts.
- Optimize designs by evaluating impacts of flow rates, column height, and packing types on VOC removal.
Suggested summary
Before starting, you can change the chapters and the workload. Choose which chapter to start with. Add or remove chapters. Increase or decrease the course workload.What our students say
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