Does Liquid viscosity in Membrane affects flux of membrane?
The viscosity of a liquid can affect the flux of a membrane. The flux of a membrane is the rate at which a liquid or gas passes through the membrane. It is affected by a number of factors, including the viscosity of the liquid, the pore size of the membrane, and the pressure difference across the membrane.
In general, the higher the viscosity of the liquid, the lower the flux of the membrane. This is because the higher viscosity makes it more difficult for the liquid to flow through the pores of the membrane. The effect of viscosity on flux is more pronounced for membranes with smaller pore sizes.
How to Calculate Liquid Viscosity Based On Hagen Poiseuille Equation?
Liquid Viscosity Based On Hagen Poiseuille Equation calculator uses Liquid Viscosity = (Pore Diameter^2*Membrane Porosity*Applied Pressure Driving Force)/(32*Flux through Membrane*Tortuosity*Membrane Thickness) to calculate the Liquid Viscosity, Liquid Viscosity based on hagen Poiseuille Equation defined the viscosity of the liquid passing though the membrane. It helps to determine how viscous the fluid is passing through the membrane. Liquid Viscosity is denoted by μ symbol.
How to calculate Liquid Viscosity Based On Hagen Poiseuille Equation using this online calculator? To use this online calculator for Liquid Viscosity Based On Hagen Poiseuille Equation, enter Pore Diameter (d), Membrane Porosity (ε), Applied Pressure Driving Force (ΔPm), Flux through Membrane (JwM), Tortuosity (Τ) & Membrane Thickness (lmt) and hit the calculate button. Here is how the Liquid Viscosity Based On Hagen Poiseuille Equation calculation can be explained with given input values -> 0.00225 = (6.3245E-06^2*0.35*300000)/(32*0.0069444*280*7.5E-05).