Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor Solution

STEP 0: Pre-Calculation Summary
Formula Used
Reaction Rate based on Surface Area = Liquid Phase MTC*(Concentration of Reactant A at Interphase-Reactant Concentration)
r''A = kAl *(CAi-CA)
This formula uses 4 Variables
Variables Used
Reaction Rate based on Surface Area - (Measured in Mole per Cubic Meter Second) - Reaction Rate based on Surface Area refers to the Rate Calculated when Surface Area of the Contactor is Considered.
Liquid Phase MTC - (Measured in Meter per Second) - Liquid Phase MTC quantifies the diffusion rate constant of the Liquid Phase mass transfer process.
Concentration of Reactant A at Interphase - (Measured in Mole per Cubic Meter) - Concentration of Reactant A at Interphase is the Concentration recorded, at the Gas-Liquid Equilibrium.
Reactant Concentration - (Measured in Mole per Cubic Meter) - Reactant Concentration is a measure of the quantity of a specific reactant in relation to the total volume of the system in which a chemical reaction is taking place.
STEP 1: Convert Input(s) to Base Unit
Liquid Phase MTC: 0.33 Meter per Second --> 0.33 Meter per Second No Conversion Required
Concentration of Reactant A at Interphase: 31.2 Mole per Cubic Meter --> 31.2 Mole per Cubic Meter No Conversion Required
Reactant Concentration: 24.1 Mole per Cubic Meter --> 24.1 Mole per Cubic Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
r''A = kAl *(CAi-CA) --> 0.33*(31.2-24.1)
Evaluating ... ...
r''A = 2.343
STEP 3: Convert Result to Output's Unit
2.343 Mole per Cubic Meter Second --> No Conversion Required
FINAL ANSWER
2.343 Mole per Cubic Meter Second <-- Reaction Rate based on Surface Area
(Calculation completed in 00.020 seconds)

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10+ Fluid-Fluid Reactions Kinetics Calculators

General Rate Equation of Mass Transfer
​ Go Rate based on Volume of Contactor = (1/((1/(Gas Phase Mass Transfer Coefficient*Interfacial Area using Contactor))+(Henry Law Constant/(Liquid Phase Mass Transfer Coefficient*Interfacial Area using Contactor*Liquid Film Enhancement Factor))+(Henry Law Constant/(Rate Constant for Fluid Fluid Reactions*Fraction of Liquid*Concentration of Liquid B))))*(Partial Pressure of Reactant A)
Final Rate Expression for Straight Mass Transfer
​ Go Reaction Rate based on Volume of Contactor = (1/((1/Gas Phase Mass Transfer Coefficient*Interfacial Area using Contactor)+(Henry Law Constant/Liquid Phase Mass Transfer Coefficient*Interfacial Area using Contactor)))*(Partial Pressure of Reactant A-Henry Law Constant*Reactant Concentration)
Rate of Reactant A for Straight Mass Transfer for Liquid Film using Volume of Contactor
​ Go Overall Reaction Rate based on Volume of Contactor = -(Liquid Phase Mass Transfer Coefficient*Interfacial Area using Contactor*(Concentration of Reactant A at Interphase-Reactant Concentration))
Rate Equation of Reactant A for Straight Mass Transfer for Gas Film using Volume of Contactor
​ Go Overall Reaction Rate based on Volume of Contactor = -(Gas Phase MTC*Interfacial Area using Contactor*(Partial Pressure of Reactant A-Partial Pressure of Reactant A at Interface))
Rate Equation of Reactant A for Straight Mass Transfer for Gas Film using Surface Area of Contactor
​ Go Reaction Rate based on Surface Area = Gas Phase Mass Transfer Coefficient*(Partial Pressure of Reactant A-Partial Pressure of Reactant A at Interface)
Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor
​ Go Reaction Rate based on Surface Area = Liquid Phase MTC*(Concentration of Reactant A at Interphase-Reactant Concentration)
Interfacial Area of Contactor
​ Go Interfacial Area using Contactor = Interfacial Surface Area of Contactor/Volume of Contactor
Interfacial Area of Liquid in Contactor
​ Go Interfacial Area of Liquid = Interfacial Surface Area of Contactor/Volume of Liquid
Fraction of Liquid in Fluid Kinetics
​ Go Fraction of Liquid = Volume of Liquid/Volume of Contactor
Fraction of Gas in Fluid Fluid Kinetics
​ Go Fraction of Gas = Volume of Gas/Volume of Contactor

Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor Formula

Reaction Rate based on Surface Area = Liquid Phase MTC*(Concentration of Reactant A at Interphase-Reactant Concentration)
r''A = kAl *(CAi-CA)

How the Concentration of Reactant is Calculated at Interface?

To calculate the concentration at the interface, you need to know the partial pressure of the reactant in the gas phase and the Henry's constant for the particular reactant-solvent pair at the operating temperature.

What are Fluid-Fluid Reactions?

Fluid-Fluid Reactions often refer to reactions that occur between different phases of fluids. This typically involves reactions between gases and liquids or reactions between two immiscible liquids. The study of these reactions involves considering the kinetics, which is the study of reaction rates and mechanisms.

How to Calculate Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor?

Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor calculator uses Reaction Rate based on Surface Area = Liquid Phase MTC*(Concentration of Reactant A at Interphase-Reactant Concentration) to calculate the Reaction Rate based on Surface Area, The Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor formula is defined as Rate of Reaction, when Liquid Phase Mass Transfer Coefficient, Concentration of Reactant, are considered for the Calculation. Reaction Rate based on Surface Area is denoted by r''A symbol.

How to calculate Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor using this online calculator? To use this online calculator for Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor, enter Liquid Phase MTC (kAl ), Concentration of Reactant A at Interphase (CAi) & Reactant Concentration (CA) and hit the calculate button. Here is how the Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor calculation can be explained with given input values -> 23.4158 = 0.33*(31.2-24.1).

FAQ

What is Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor?
The Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor formula is defined as Rate of Reaction, when Liquid Phase Mass Transfer Coefficient, Concentration of Reactant, are considered for the Calculation and is represented as r''A = kAl *(CAi-CA) or Reaction Rate based on Surface Area = Liquid Phase MTC*(Concentration of Reactant A at Interphase-Reactant Concentration). Liquid Phase MTC quantifies the diffusion rate constant of the Liquid Phase mass transfer process, Concentration of Reactant A at Interphase is the Concentration recorded, at the Gas-Liquid Equilibrium & Reactant Concentration is a measure of the quantity of a specific reactant in relation to the total volume of the system in which a chemical reaction is taking place.
How to calculate Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor?
The Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor formula is defined as Rate of Reaction, when Liquid Phase Mass Transfer Coefficient, Concentration of Reactant, are considered for the Calculation is calculated using Reaction Rate based on Surface Area = Liquid Phase MTC*(Concentration of Reactant A at Interphase-Reactant Concentration). To calculate Rate of Reactant A for Straight Mass Transfer for Liquid Film using Surface Area of Contactor, you need Liquid Phase MTC (kAl ), Concentration of Reactant A at Interphase (CAi) & Reactant Concentration (CA). With our tool, you need to enter the respective value for Liquid Phase MTC, Concentration of Reactant A at Interphase & Reactant Concentration and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Reaction Rate based on Surface Area?
In this formula, Reaction Rate based on Surface Area uses Liquid Phase MTC, Concentration of Reactant A at Interphase & Reactant Concentration. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Reaction Rate based on Surface Area = Gas Phase Mass Transfer Coefficient*(Partial Pressure of Reactant A-Partial Pressure of Reactant A at Interface)
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