Reactant Concentration using Reactant Conversion with Varying Density Solution

STEP 0: Pre-Calculation Summary
Formula Used
Reactant Concentration = ((1-Reactant Conversion)*(Initial Reactant Concentration))/(1+Fractional Volume Change*Reactant Conversion)
C = ((1-XA)*(Co))/(1+ε*XA)
This formula uses 4 Variables
Variables Used
Reactant Concentration - (Measured in Mole per Cubic Meter) - The Reactant Concentration refers to the amount of reactant present in the solvent at any given point of time during the process.
Reactant Conversion - Reactant Conversion gives us the percentage of reactants converted into products. Enter the percentage as a decimal between 0 and 1.
Initial Reactant Concentration - (Measured in Mole per Cubic Meter) - The Initial Reactant Concentration refers to the amount of reactant present in the solvent before the considered process.
Fractional Volume Change - Fractional Volume Change is the ratio of the change in volume and the initial volume.
STEP 1: Convert Input(s) to Base Unit
Reactant Conversion: 0.7 --> No Conversion Required
Initial Reactant Concentration: 80 Mole per Cubic Meter --> 80 Mole per Cubic Meter No Conversion Required
Fractional Volume Change: 0.21 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
C = ((1-XA)*(Co))/(1+ε*XA) --> ((1-0.7)*(80))/(1+0.21*0.7)
Evaluating ... ...
C = 20.924149956408
STEP 3: Convert Result to Output's Unit
20.924149956408 Mole per Cubic Meter --> No Conversion Required
FINAL ANSWER
20.924149956408 20.92415 Mole per Cubic Meter <-- Reactant Concentration
(Calculation completed in 00.005 seconds)

Credits

Created by akhilesh
K. K. Wagh Institute of Engineering Education and Research (K.K.W.I.E.E.R.), Nashik
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9 Introduction to Reactor Design Calculators

Key Reactant Conversion with Varying Density,Temperature and Total Pressure
Go Key-Reactant Conversion = (1-((Key-Reactant Concentration/Initial Key-Reactant Concentration)*((Temperature*Initial Total Pressure)/(Initial Temperature*Total Pressure))))/(1+Fractional Volume Change*((Key-Reactant Concentration/Initial Key-Reactant Concentration)*((Temperature*Initial Total Pressure)/(Initial Temperature*Total Pressure))))
Initial Key Reactant Concentration with Varying Density,Temperature and Total Pressure
Go Initial Key-Reactant Concentration = Key-Reactant Concentration*((1+Fractional Volume Change*Key-Reactant Conversion)/(1-Key-Reactant Conversion))*((Temperature*Initial Total Pressure)/(Initial Temperature*Total Pressure))
Key Reactant Concentration with Varying Density,Temperature and Total Pressure
Go Key-Reactant Concentration = Initial Key-Reactant Concentration*((1-Key-Reactant Conversion)/(1+Fractional Volume Change*Key-Reactant Conversion))*((Initial Temperature*Total Pressure)/(Temperature*Initial Total Pressure))
Reactant Conversion using Reactant Concentration with Varying Density
Go Reactant Conversion = (Initial Reactant Concentration-Reactant Concentration)/(Initial Reactant Concentration+Fractional Volume Change*Reactant Concentration)
Initial Reactant Concentration using Reactant Conversion with Varying Density
Go Initial Reactant Concentration = ((Reactant Concentration)*(1+Fractional Volume Change*Reactant Conversion))/(1-Reactant Conversion)
Reactant Concentration using Reactant Conversion with Varying Density
Go Reactant Concentration = ((1-Reactant Conversion)*(Initial Reactant Concentration))/(1+Fractional Volume Change*Reactant Conversion)
Initial Reactant Concentration using Reactant Conversion
Go Initial Reactant Concentration = Reactant Concentration/(1-Reactant Conversion)
Reactant Concentration using Reactant Conversion
Go Reactant Concentration = Initial Reactant Concentration*(1-Reactant Conversion)
Reactant Conversion using Reactant Concentration
Go Reactant Conversion = 1-(Reactant Concentration/Initial Reactant Concentration)

Reactant Concentration using Reactant Conversion with Varying Density Formula

Reactant Concentration = ((1-Reactant Conversion)*(Initial Reactant Concentration))/(1+Fractional Volume Change*Reactant Conversion)
C = ((1-XA)*(Co))/(1+ε*XA)

What are the factors to be considered for reactor design?

The different factors required for reactor design are (i) Size of reactor (ii) Type of reactor (iii) Time or duration of reaction (iv) Temperature & Composition of reacting material in the reactor (v) Heat removal or added and (vi) Flow pattern of fluid in the reactor.

How to Calculate Reactant Concentration using Reactant Conversion with Varying Density?

Reactant Concentration using Reactant Conversion with Varying Density calculator uses Reactant Concentration = ((1-Reactant Conversion)*(Initial Reactant Concentration))/(1+Fractional Volume Change*Reactant Conversion) to calculate the Reactant Concentration, The Reactant Concentration using Reactant Conversion with Varying Density formula is defined as the concentration of reactant at a given time where density is changing and temperature and total pressure are constant in both batch and flow system. Reactant Concentration is denoted by C symbol.

How to calculate Reactant Concentration using Reactant Conversion with Varying Density using this online calculator? To use this online calculator for Reactant Concentration using Reactant Conversion with Varying Density, enter Reactant Conversion (XA), Initial Reactant Concentration (Co) & Fractional Volume Change (ε) and hit the calculate button. Here is how the Reactant Concentration using Reactant Conversion with Varying Density calculation can be explained with given input values -> 20.92415 = ((1-0.7)*(80))/(1+0.21*0.7).

FAQ

What is Reactant Concentration using Reactant Conversion with Varying Density?
The Reactant Concentration using Reactant Conversion with Varying Density formula is defined as the concentration of reactant at a given time where density is changing and temperature and total pressure are constant in both batch and flow system and is represented as C = ((1-XA)*(Co))/(1+ε*XA) or Reactant Concentration = ((1-Reactant Conversion)*(Initial Reactant Concentration))/(1+Fractional Volume Change*Reactant Conversion). Reactant Conversion gives us the percentage of reactants converted into products. Enter the percentage as a decimal between 0 and 1, The Initial Reactant Concentration refers to the amount of reactant present in the solvent before the considered process & Fractional Volume Change is the ratio of the change in volume and the initial volume.
How to calculate Reactant Concentration using Reactant Conversion with Varying Density?
The Reactant Concentration using Reactant Conversion with Varying Density formula is defined as the concentration of reactant at a given time where density is changing and temperature and total pressure are constant in both batch and flow system is calculated using Reactant Concentration = ((1-Reactant Conversion)*(Initial Reactant Concentration))/(1+Fractional Volume Change*Reactant Conversion). To calculate Reactant Concentration using Reactant Conversion with Varying Density, you need Reactant Conversion (XA), Initial Reactant Concentration (Co) & Fractional Volume Change (ε). With our tool, you need to enter the respective value for Reactant Conversion, Initial Reactant Concentration & Fractional Volume Change 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 Reactant Concentration?
In this formula, Reactant Concentration uses Reactant Conversion, Initial Reactant Concentration & Fractional Volume Change. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Reactant Concentration = Initial Reactant Concentration*(1-Reactant Conversion)
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