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Interfacial Area per Volume refers to the surface area of the interface between the two phases (usually a liquid and a gas) per unit volume of the packing material. Check FAQs
a=GmHOGKGP
a - Interfacial Area per Volume?Gm - Molar Gas Flowrate?HOG - Height of Transfer Unit?KG - Overall Gas Phase Mass Transfer Coefficient?P - Total Pressure?

Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient Example

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With units
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Here is how the Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient equation looks like with Values.

Here is how the Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient equation looks like with Units.

Here is how the Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient equation looks like.

0.1788Edit=2.0318Edit0.613Edit1.2358Edit15Edit
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Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient Solution

Follow our step by step solution on how to calculate Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient?

FIRST Step Consider the formula
a=GmHOGKGP
Next Step Substitute values of Variables
a=2.0318mol/s*m²0.613m1.2358m/s15Pa
Next Step Prepare to Evaluate
a=2.03180.6131.235815
Next Step Evaluate
a=0.1788089
LAST Step Rounding Answer
a=0.1788

Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient Formula Elements

Variables
Interfacial Area per Volume
Interfacial Area per Volume refers to the surface area of the interface between the two phases (usually a liquid and a gas) per unit volume of the packing material.
Symbol: a
Measurement: AreaUnit:
Note: Value should be greater than 0.
Molar Gas Flowrate
Molar Gas Flowrate is defined as the Molar flowrate per unit cross sectional area of the gaseous component.
Symbol: Gm
Measurement: Molar Flux of Diffusing ComponentUnit: mol/s*m²
Note: Value should be greater than 0.
Height of Transfer Unit
Height of Transfer Unit is a measure of the effectiveness of mass transfer between two phases (e.g., gas-liquid or liquid-liquid) in a separation or reaction process.
Symbol: HOG
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Overall Gas Phase Mass Transfer Coefficient
Overall Gas Phase Mass Transfer Coefficient describes the rate at which mass is transferred between the gas and liquid phases within the packed column.
Symbol: KG
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Total Pressure
Total Pressure is the actually pressure at which the system is operating a particular process.
Symbol: P
Measurement: PressureUnit: Pa
Note: Value should be greater than 0.

Other Formulas to find Interfacial Area per Volume

​Go Interfacial Area of Packing Given Performance of Column and Gas Flowrate
a=JGmk'g

Other formulas in Packed Column Designing category

​Go Effective Interfacial Area of Packing using Onda's Method
aW=a(1-exp((-1.45((σcσL)0.75)(LWaμL)0.1)((LW)2a(ρL)2[g])-0.05)(LW2ρLaσL)0.2)
​Go Height of Overall Gas Phase Transfer Unit in Packed Column
HOG=GmKGaP
​Go Liquid Mass Film Coefficient in Packed Columns
KL=0.0051((LWVPaWμL)23)((μLρLDc)-12)((adpVP)0.4)(μL[g]ρL)13
​Go Log Mean Driving Force Based on Mole Fraction
Δylm=y1-y2ln(y1-yey2-ye)

How to Evaluate Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient?

Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient evaluator uses Interfacial Area per Volume = (Molar Gas Flowrate)/(Height of Transfer Unit*Overall Gas Phase Mass Transfer Coefficient*Total Pressure) to evaluate the Interfacial Area per Volume, The Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient formula is defined as the surface area per unit volume at the interface between the gas and liquid phases within the column packing. It dictates the extent of contact between the two phases. Interfacial Area per Volume is denoted by a symbol.

How to evaluate Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient using this online evaluator? To use this online evaluator for Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient, enter Molar Gas Flowrate (Gm), Height of Transfer Unit (HOG), Overall Gas Phase Mass Transfer Coefficient (KG) & Total Pressure (P) and hit the calculate button.

FAQs on Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient

What is the formula to find Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient?
The formula of Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient is expressed as Interfacial Area per Volume = (Molar Gas Flowrate)/(Height of Transfer Unit*Overall Gas Phase Mass Transfer Coefficient*Total Pressure). Here is an example- 0.017881 = (2.0318103)/(0.612991674629643*1.2358*15).
How to calculate Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient?
With Molar Gas Flowrate (Gm), Height of Transfer Unit (HOG), Overall Gas Phase Mass Transfer Coefficient (KG) & Total Pressure (P) we can find Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient using the formula - Interfacial Area per Volume = (Molar Gas Flowrate)/(Height of Transfer Unit*Overall Gas Phase Mass Transfer Coefficient*Total Pressure).
What are the other ways to Calculate Interfacial Area per Volume?
Here are the different ways to Calculate Interfacial Area per Volume-
  • Interfacial Area per Volume=(Column Performance*Molar Gas Flowrate)/Gas Film Transfer CoefficientOpenImg
Can the Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient be negative?
No, the Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient, measured in Area cannot be negative.
Which unit is used to measure Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient?
Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient is usually measured using the Square Meter[m²] for Area. Square Kilometer[m²], Square Centimeter[m²], Square Millimeter[m²] are the few other units in which Interfacial Area given Height of Transfer Unit and Mass Transfer Coefficient can be measured.
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