Molar Feed Rate of Reactant using Reactant Conversion Solution

STEP 0: Pre-Calculation Summary
Formula Used
Molar Feed Rate of Reactant = Molar Flow Rate of Unreacted Reactant/(1-Reactant Conversion)
FAo = FA/(1-XA)
This formula uses 3 Variables
Variables Used
Molar Feed Rate of Reactant - (Measured in Mole per Second) - The Molar Feed Rate of Reactant gives the number of moles of A being fed to the reactor per unit time.
Molar Flow Rate of Unreacted Reactant - (Measured in Mole per Second) - Molar Flow Rate of Unreacted Reactant gives the number of moles of unreacted reactant leaving the system per unit time.
Reactant Conversion - Reactant Conversion gives us the percentage of reactants converted into products. Enter the percentage as a decimal between 0 and 1.
STEP 1: Convert Input(s) to Base Unit
Molar Flow Rate of Unreacted Reactant: 1.5 Mole per Second --> 1.5 Mole per Second No Conversion Required
Reactant Conversion: 0.7 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
FAo = FA/(1-XA) --> 1.5/(1-0.7)
Evaluating ... ...
FAo = 5
STEP 3: Convert Result to Output's Unit
5 Mole per Second --> No Conversion Required
FINAL ANSWER
5 Mole per Second <-- Molar Feed Rate of Reactant
(Calculation completed in 00.004 seconds)

Credits

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K. K. Wagh Institute of Engineering Education and Research (K.K.W.I.E.E.R.), Nashik
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Basic Formulas Calculators

Molar Flow Rate of Unreacted Reactant using Reactant Conversion
​ LaTeX ​ Go Molar Flow Rate of Unreacted Reactant = Molar Feed Rate of Reactant*(1-Reactant Conversion)
Molar Feed Rate of Reactant using Reactant Conversion
​ LaTeX ​ Go Molar Feed Rate of Reactant = Molar Flow Rate of Unreacted Reactant/(1-Reactant Conversion)
Reactor Space Velocity
​ LaTeX ​ Go Reactor Space Velocity = Volumetric Flow Rate of Feed to Reactor/Reactor Volume
Reactor Space Time
​ LaTeX ​ Go Reactor Space Time = Reactor Volume/Volumetric Flow Rate of Feed to Reactor

Basics of Parallel and Single Reactions Calculators

Overall Fractional Yield
​ LaTeX ​ Go Overall Fractional Yield = Total Moles of Product Formed/(Initial Total Moles of Reactant-Total Moles of Unreacted Reactant)
Number of Moles of Reactant Reacted
​ LaTeX ​ Go Number of Moles of Reactant Reacted = Number of Moles of Product Formed/Instantaneous Fractional Yield
Number of Moles of Product Formed
​ LaTeX ​ Go Number of Moles of Product Formed = Number of Moles of Reactant Reacted*Instantaneous Fractional Yield
Instantaneous Fractional Yield
​ LaTeX ​ Go Instantaneous Fractional Yield = Number of Moles of Product Formed/Number of Moles of Reactant Reacted

Molar Feed Rate of Reactant using Reactant Conversion Formula

​LaTeX ​Go
Molar Feed Rate of Reactant = Molar Flow Rate of Unreacted Reactant/(1-Reactant Conversion)
FAo = FA/(1-XA)

What is Conversion?

Conversion is defined only for the Reactants not for products, For reactant A Conversion is defined as the Number of moles of A reacted to the Total number of moles of A fed into the system(i.e. Reactor). It is a basic term in a Chemical kinetics and plays a vital role in the Chemical Reaction Engineering

What is Chemical Reaction Engineering?

Chemical reaction engineering is a specialty in chemical engineering or industrial chemistry dealing with chemical reactors. Frequently the term relates specifically to catalytic reaction systems where either a homogeneous or heterogeneous catalyst is present in the reactor. Sometimes a reactor per se is not present by itself, but rather is integrated into a process, for example in reactive separations vessels, retorts, certain fuel cells, and photocatalytic surfaces.

How to Calculate Molar Feed Rate of Reactant using Reactant Conversion?

Molar Feed Rate of Reactant using Reactant Conversion calculator uses Molar Feed Rate of Reactant = Molar Flow Rate of Unreacted Reactant/(1-Reactant Conversion) to calculate the Molar Feed Rate of Reactant, The Molar Feed Rate of Reactant using Reactant Conversion formula is defined as the number of moles of the reactant being fed to the reactor per unit time or the number of moles of a material that passes a reference plane within a unit time interval as a feed. Molar Feed Rate of Reactant is denoted by FAo symbol.

How to calculate Molar Feed Rate of Reactant using Reactant Conversion using this online calculator? To use this online calculator for Molar Feed Rate of Reactant using Reactant Conversion, enter Molar Flow Rate of Unreacted Reactant (FA) & Reactant Conversion (XA) and hit the calculate button. Here is how the Molar Feed Rate of Reactant using Reactant Conversion calculation can be explained with given input values -> 5 = 1.5/(1-0.7).

FAQ

What is Molar Feed Rate of Reactant using Reactant Conversion?
The Molar Feed Rate of Reactant using Reactant Conversion formula is defined as the number of moles of the reactant being fed to the reactor per unit time or the number of moles of a material that passes a reference plane within a unit time interval as a feed and is represented as FAo = FA/(1-XA) or Molar Feed Rate of Reactant = Molar Flow Rate of Unreacted Reactant/(1-Reactant Conversion). Molar Flow Rate of Unreacted Reactant gives the number of moles of unreacted reactant leaving the system per unit time & Reactant Conversion gives us the percentage of reactants converted into products. Enter the percentage as a decimal between 0 and 1.
How to calculate Molar Feed Rate of Reactant using Reactant Conversion?
The Molar Feed Rate of Reactant using Reactant Conversion formula is defined as the number of moles of the reactant being fed to the reactor per unit time or the number of moles of a material that passes a reference plane within a unit time interval as a feed is calculated using Molar Feed Rate of Reactant = Molar Flow Rate of Unreacted Reactant/(1-Reactant Conversion). To calculate Molar Feed Rate of Reactant using Reactant Conversion, you need Molar Flow Rate of Unreacted Reactant (FA) & Reactant Conversion (XA). With our tool, you need to enter the respective value for Molar Flow Rate of Unreacted Reactant & Reactant Conversion and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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