What is Drying Mass Transfer Operation?
Drying is a mass transfer operation that involves the removal of moisture or other volatile solvents from a solid material. The process of drying is used in a variety of industries, including food processing, pharmaceuticals, chemicals, and textiles. In drying, heat is applied to the material to increase its temperature, which causes the moisture or solvent to evaporate. The evaporated moisture is then removed from the material using a drying medium, such as air, which carries away the moisture as it flows over the surface of the material. There are several types of drying techniques, including convection drying, which uses hot air to remove moisture; radiation drying, which uses infrared radiation to heat the material and remove moisture; and vacuum drying, which removes moisture by creating a low-pressure environment.
How to Calculate Unbound Moisture Weight based on Free and Equilibrium Moisture Weight?
Unbound Moisture Weight based on Free and Equilibrium Moisture Weight calculator uses Unbound Weight of Moisture = Equilibrium Weight of Moisture+Free Weight of Moisture-Bound Weight of Moisture to calculate the Unbound Weight of Moisture, The Unbound Moisture Weight based on Free and Equilibrium Moisture Weight formula is defined as the weight of moisture that is unbound to the solid as the difference between initial and bound moisture where initial moisture is represented as a sum of free and equilibrium moisture. Unbound Weight of Moisture is denoted by MUb symbol.
How to calculate Unbound Moisture Weight based on Free and Equilibrium Moisture Weight using this online calculator? To use this online calculator for Unbound Moisture Weight based on Free and Equilibrium Moisture Weight, enter Equilibrium Weight of Moisture (MEq), Free Weight of Moisture (MFree) & Bound Weight of Moisture (Mb) and hit the calculate button. Here is how the Unbound Moisture Weight based on Free and Equilibrium Moisture Weight calculation can be explained with given input values -> 33.4 = 5+34.4-6.