What are the factors to be considered for Solvent Selection ?
The factors to be considered are: 1. The gas solubility should be high, thus increasing the rate of absorption and decreasing the quantity of solvent required. 2. The solvent should have a low vapour pressure to reduce loss of solvent in the gas leaving an absorption column. 3. The materials of construction required for the equipment should not be unusual or expensive. 4. The solvent should be inexpensive, so that losses are not costly, and should be readily available. 5. Low viscosity is preferred for reasons of rapid absorption rates, improved flooding characteristics in packed column, low pressure drops on pumping, and good heat transfer characteristics. 6. The solvent should be non-toxic, non-flammable and chemically stable.
How to Calculate Maximum Gas Rate for Absorption Column?
Maximum Gas Rate for Absorption Column calculator uses Maximum Gas Flowrate on Solute Free Basis = Liquid Flowrate on Solute Free Basis/((Solute Free Mole Fraction of Gas in Inlet-Solute Free Mole Fraction of Gas in Outlet)/((Solute Free Mole Fraction of Gas in Inlet/Equilibrium Constant for Mass Transfer)-Solute Free Mole Fraction of Liquid in Inlet)) to calculate the Maximum Gas Flowrate on Solute Free Basis, The Maximum Gas Rate for Absorption Column formula is defined for maximum gas rate that can be treated with a defined target of separation and fixed liquid flow rate. Maximum Gas Flowrate on Solute Free Basis is denoted by Gsmax symbol.
How to calculate Maximum Gas Rate for Absorption Column using this online calculator? To use this online calculator for Maximum Gas Rate for Absorption Column, enter Liquid Flowrate on Solute Free Basis (Ls), Solute Free Mole Fraction of Gas in Inlet (YN+1), Solute Free Mole Fraction of Gas in Outlet (Y1), Equilibrium Constant for Mass Transfer (α) & Solute Free Mole Fraction of Liquid in Inlet (X0) and hit the calculate button. Here is how the Maximum Gas Rate for Absorption Column calculation can be explained with given input values -> 17.19524 = 23/((0.8-0.1)/((0.8/1.5)-0.0099)).