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Binary Distillation for Process & Chemical Engineering
- Offered byUDEMY
Binary Distillation for Process & Chemical Engineering at UDEMY Overview
Duration | 4 hours |
Total fee | ₹999 |
Mode of learning | Online |
Credential | Certificate |
Binary Distillation for Process & Chemical Engineering at UDEMY Highlights
- Earn a certificate of completion from Udemy
- Learn from 1 articles
- Get full lifetime access of the course material
- Comes with 30 days money back guarantee
Binary Distillation for Process & Chemical Engineering at UDEMY Course details
- For Chemical Engineers refreshing their Mass Transfer and Separation Processes course
- For Students on the relevant fields (chemical, mechanical, process engineering)
- For Engineers working with Distillation Columns / Flash Drums
- For Process Separation Engineer
- Understand the Principles behind Binary Distillation
- Design & Operate Flashing, and Flash Drums via Flash Distillation of Binary Mixtures
- Understand and apply the principles and methods for simple distillation of binary mixtures
- Understand Continuous Distillation Equipment
- Model Distillations of Binary Systems
- Apply McCabe-Thiele Method for Continuous Distillation Column Design (Number of Stages)
- Simulate several process, specially continuous and batch distillation of binary mixtures
- Get to know the "Recycle Ratio", "Reboiler Duty", "Feed Stage" etc...
- Model Stripping and Enriching Sections of a Distillation Column
- Binary Distillation is one of the most important Mass Transfer Operations used extensively in the Chemical industry
- Understanding the concept behind Gas-Gas, Liquid-Liquid and the Gas-Liquid mass transfer interaction will allow you to understand and model Distillation Columns, Flashes, Batch Distillator, Tray Columns and Packed column, etc
- You will be able to understand mass transfer mechanism and processes behind Binary Distillation in Flash, Continuous & Batch Processes
- You will be able to continue with a Multi-Component Distillation, Reactive Distillation and Azeotropic Distillation as well as more Mass Transfer Unit Operation Courses and/or Separation Processes Course
Binary Distillation for Process & Chemical Engineering at UDEMY Curriculum
Welcome
Introduction to Distillation
Requirements
Reference Material
Review of Mass transfer & transport phenomena
Ideal Gas
Ideal Solution
Vapor Pressure
Partial Pressure
What is Equilibrium? (Pure Substances)
Raoult?s Law
What is Flux?
What is Ja? Diffusion Flux
Convection
Binary Distillation Overview
Type of Equipment - Dispersion of Gas-Liquid and Liquid-Gas
Spray Column
Bubble Column
Packed Column
Tray Column
Types of Operation
Single vs. Multiple Stage
Introduction to Tray Columns
Sieve Trays
Valve Trays
Bubble Cap Trays
Tray Considerations
Trays - Spacing
Trays - Sizing
Trays - Layouts
Trays - Materials
Trays - Manways
Trays - Operations
Tray - Pressure Drop
Trays - Costs
Tray - Maintenance
Trays - Summary
All other Pieces
Bubbling Area
Contact Area
Weir
Downcomer
Stage Efficiency
Murphree's Efficiency
Column Operation
Column Operation - Normal
Column Operation - Flooding
Column Operation - Priming
Column Operation - Coning
Column Operation - Weeping
Column Operation - Dumping
Column Operation - Summary
Tray Diameter Introduction
Tray Spacing
Pressure Drop in Trays
Hd, Dry Liquid sieve loss - Pressure Drop in trays
Hl, (equivalent h eight of clear liquid holdup)
Hd, Surface Tension Pressure loss
Packed Columns vs. Tray Columns
Introduction to Packings
Packing Material
Random Packing
Stacked Packing
Structural Packing
Other Column Internals
Liquid distributor
Liquid/Vapour Re-Distributor
Vapour Distributor
Demister / Mist Eliminator
Vortex breaker
Packing Supports
Retaining devices (Hold-down Plate & Bed limiter )
Column Structure - Top
Column Structure - Middle
Column Structure - Bottom
Software Simulation
Benzene and toluene Feed Tray, Min. Recycle Ratio, etc
WKS RadFrac - C3 - iC4 Separation - Recycle
WKS RadFrac - Column Internals, Trays vs Packings
WKS Sensitivity Analysis of Feed Stages, Reflux Ratios and Pressure in a RadFrac
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