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Separation process
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Related lectures (30)
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Separation Processes: Energy Efficiency and Techniques
Covers the fundamentals of separation processes and their energy efficiency, focusing on CO₂ separation from air and various techniques used in the industry.
Chromatography: Methods and Principles
Explores analytical separation methods, chromatographic principles, and quantitative techniques for accurate compound analysis.
Introduction to Separation Processes: Fundamentals and Applications
Covers the fundamentals of separation processes and their significance in chemical engineering applications.
Unit Operations: Introduction and Filtration
Covers the basics of unit operations, challenges, and filtration techniques in chemical engineering.
Designing Forest Materials for CO2 Conversion
Explores the design of forest materials for CO2 conversion into high-value chemicals through collaboration between EPFL and UM6P.
Liquid-Liquid Extraction: Principles and Applications
Discusses liquid-liquid extraction principles, focusing on purifying acetic acid using 1-butanol as a solvent in a countercurrent extraction process.
Separation Processes: Absorption and Stripping Techniques
Discusses absorption-based separation processes, focusing on mass transfer principles and the Kremser equation for stage calculations.
Liquid-Liquid Extraction: Principles and Applications
Covers the principles and applications of liquid-liquid extraction in chemical engineering.
Liquid Extraction: Acetic Acid Separation
Explains liquid extraction for acetic acid separation and discusses a distillation problem involving methanol and water.
Chromatographic Models: Theory and Applications
Explores chromatographic models, efficiency factors, signal broadening, and thermodynamics in chromatography.
Capillary Electrophoresis: Principles and Applications
Explores capillary electrophoresis principles, migration theory, electroosmosis, detectors, and applications in separation techniques.
Separation Processes: Fundamentals and Applications
Covers the fundamentals of separation processes in chemical engineering, including methods, design principles, and their industrial significance.
Distillation Processes: Energy and Mass Balances
Provides an overview of distillation processes, focusing on energy and mass balances essential for effective separation in chemical engineering.
Filtration Theory and Techniques
Explores filtration theory, techniques, and membrane separation principles.
LHD Barcode: Chemical Inventory Management
Covers the implementation of the LHD Barcode system for chemical inventory management at EPFL.
Liquid-Liquid Extraction: Principles and Applications
Covers the principles of liquid-liquid extraction, including solvent selection and mass transfer in continuous operations.
Distillation Column Design: Reflux Ratio and Stages
Discusses the design of distillation columns, focusing on reflux ratios and the number of stages needed for effective separation.
Phase Equilibria: Understanding Vapor-Liquid Separation
Provides an overview of vapor-liquid phase diagrams and their role in separation processes, focusing on phase equilibria and the Gibbs phase rule.
Intrinsically Disordered Proteins: Phase Separation and Membrane Interactions
Explores the behavior of intrinsically disordered proteins, polymer phase separation, Flory-Huggins theory, and biomolecular condensates.
Liquid-Liquid Extraction: Phase Diagrams and Calculations
Covers liquid-liquid extraction processes, focusing on phase diagrams and calculations for partially miscible solvents and diluents.
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