Gas Absorption and Stripping
Gas absorption and stripping are mass transfer operations widely used in chemical and environmental engineering for separating components from gas mixtures.
Gas Absorption
Gas absorption involves the transfer of solute components from a gas mixture to a liquid solvent. This process is driven by the concentration difference between the two phases.
Key aspects of gas absorption:
- Rich gas (containing solute) contacts a weak liquor (absorbent)
- Solute transfers from the gas to the liquid phase
- Process continues until equilibrium is reached
Highlight: The absorption factor in gas absorption is a key parameter that influences the efficiency of the process. It is defined as the ratio of the slope of the operating line to the slope of the equilibrium curve.
Formula: Absorption Factor = L / , where L is the liquid flow rate, G is the gas flow rate, and m is the slope of the equilibrium curve.
Stripping (Desorption)
Stripping, also known as desorption, is essentially the reverse process of gas absorption.
Key features of stripping:
- Rich liquor (containing solute) contacts an inert gas
- Solute transfers from the liquid to the gas phase
- Results in a dilute gas (exit gas) with higher solute content
Example: Stripping is commonly used in wastewater treatment to remove volatile organic compounds (VOCs) from contaminated water using air as the stripping medium.
Both gas absorption and stripping operations often utilize column-type equipment, such as packed or tray columns, to facilitate efficient mass transfer between phases.
Vocabulary: The absorption column working principle involves countercurrent flow of gas and liquid phases, maximizing the driving force for mass transfer throughout the column height.




