Rate Constant for Second Order Reaction for Mixed Flow Formula

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Rate Constant for 2ndOrder Reaction for Mixed Flow is defined as the average rate of the reaction per concentration of the reactant having power raised to 2. Check FAQs
kMixedFlow''=(1𝛕MFRCo-MFR)(XMFR(1+(εXMFR))2(1-XMFR)2)
kMixedFlow'' - Rate Constant for 2ndOrder Reaction for Mixed Flow?𝛕MFR - Space Time in MFR?Co-MFR - Initial Reactant Concentration in MFR?XMFR - Reactant Conversion in MFR?ε - Fractional Volume Change in Reactor?

Rate Constant for Second Order Reaction for Mixed Flow Example

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Here is how the Rate Constant for Second Order Reaction for Mixed Flow equation looks like with Values.

Here is how the Rate Constant for Second Order Reaction for Mixed Flow equation looks like with Units.

Here is how the Rate Constant for Second Order Reaction for Mixed Flow equation looks like.

13774.7274Edit=(10.0612Edit81Edit)(0.702Edit(1+(0.21Edit0.702Edit))2(1-0.702Edit)2)
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Rate Constant for Second Order Reaction for Mixed Flow Solution

Follow our step by step solution on how to calculate Rate Constant for Second Order Reaction for Mixed Flow?

FIRST Step Consider the formula
kMixedFlow''=(1𝛕MFRCo-MFR)(XMFR(1+(εXMFR))2(1-XMFR)2)
Next Step Substitute values of Variables
kMixedFlow''=(10.0612s81mol/m³)(0.702(1+(0.210.702))2(1-0.702)2)
Next Step Prepare to Evaluate
kMixedFlow''=(10.061281)(0.702(1+(0.210.702))2(1-0.702)2)
Next Step Evaluate
kMixedFlow''=13774.7273624651m³/(mol*s)
LAST Step Rounding Answer
kMixedFlow''=13774.7274m³/(mol*s)

Rate Constant for Second Order Reaction for Mixed Flow Formula Elements

Variables
Rate Constant for 2ndOrder Reaction for Mixed Flow
Rate Constant for 2ndOrder Reaction for Mixed Flow is defined as the average rate of the reaction per concentration of the reactant having power raised to 2.
Symbol: kMixedFlow''
Measurement: Second Order Reaction Rate ConstantUnit: m³/(mol*s)
Note: Value should be greater than 0.
Space Time in MFR
Space Time in MFR is the time necessary to process volume of reactor fluid at the entrance conditions.
Symbol: 𝛕MFR
Measurement: TimeUnit: s
Note: Value should be greater than 0.
Initial Reactant Concentration in MFR
The Initial Reactant Concentration in MFR refers to the amount of reactant present in the solvent before the considered process.
Symbol: Co-MFR
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Reactant Conversion in MFR
Reactant Conversion in MFR gives us the percentage of reactants converted into products. Enter the percentage as a decimal between 0 and 1.
Symbol: XMFR
Measurement: NAUnit: Unitless
Note: Value should be less than 1.
Fractional Volume Change in Reactor
Fractional Volume Change in Reactor is the ratio of the change in volume and the initial volume.
Symbol: ε
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Mixed Flow category

​Go Initial Reactant Concentration for Second Order Reaction for Mixed Flow
CoMixedFlow=(1𝛕MFRk'' MFR)(XMFR(1+(εXMFR))2(1-XMFR)2)
​Go Initial Reactant Concentration for Zero Order Reaction for Mixed Flow
Co-MFR=k0-MFR𝛕MFRXMFR
​Go Rate Constant for First Order Reaction for Mixed Flow
k1MFR=(1𝛕MFR)(XMFR(1+(εXMFR))1-XMFR)
​Go Rate Constant for Zero Order Reaction for Mixed Flow
k0-MFR=XMFRCo-MFR𝛕MFR

How to Evaluate Rate Constant for Second Order Reaction for Mixed Flow?

Rate Constant for Second Order Reaction for Mixed Flow evaluator uses Rate Constant for 2ndOrder Reaction for Mixed Flow = (1/Space Time in MFR*Initial Reactant Concentration in MFR)*((Reactant Conversion in MFR*(1+(Fractional Volume Change in Reactor*Reactant Conversion in MFR))^2)/(1-Reactant Conversion in MFR)^2) to evaluate the Rate Constant for 2ndOrder Reaction for Mixed Flow, The Rate Constant for Second Order Reaction for Mixed Flow formula is defined as the proportionality constant in the equation that expresses the relationship between the rate of a chemical reaction and the concentrations of the reacting substances for mixed flow. Rate Constant for 2ndOrder Reaction for Mixed Flow is denoted by kMixedFlow'' symbol.

How to evaluate Rate Constant for Second Order Reaction for Mixed Flow using this online evaluator? To use this online evaluator for Rate Constant for Second Order Reaction for Mixed Flow, enter Space Time in MFR (𝛕MFR), Initial Reactant Concentration in MFR (Co-MFR), Reactant Conversion in MFR (XMFR) & Fractional Volume Change in Reactor (ε) and hit the calculate button.

FAQs on Rate Constant for Second Order Reaction for Mixed Flow

What is the formula to find Rate Constant for Second Order Reaction for Mixed Flow?
The formula of Rate Constant for Second Order Reaction for Mixed Flow is expressed as Rate Constant for 2ndOrder Reaction for Mixed Flow = (1/Space Time in MFR*Initial Reactant Concentration in MFR)*((Reactant Conversion in MFR*(1+(Fractional Volume Change in Reactor*Reactant Conversion in MFR))^2)/(1-Reactant Conversion in MFR)^2). Here is an example- 13543.03 = (1/0.0612*81)*((0.702*(1+(0.21*0.702))^2)/(1-0.702)^2).
How to calculate Rate Constant for Second Order Reaction for Mixed Flow?
With Space Time in MFR (𝛕MFR), Initial Reactant Concentration in MFR (Co-MFR), Reactant Conversion in MFR (XMFR) & Fractional Volume Change in Reactor (ε) we can find Rate Constant for Second Order Reaction for Mixed Flow using the formula - Rate Constant for 2ndOrder Reaction for Mixed Flow = (1/Space Time in MFR*Initial Reactant Concentration in MFR)*((Reactant Conversion in MFR*(1+(Fractional Volume Change in Reactor*Reactant Conversion in MFR))^2)/(1-Reactant Conversion in MFR)^2).
Can the Rate Constant for Second Order Reaction for Mixed Flow be negative?
No, the Rate Constant for Second Order Reaction for Mixed Flow, measured in Second Order Reaction Rate Constant cannot be negative.
Which unit is used to measure Rate Constant for Second Order Reaction for Mixed Flow?
Rate Constant for Second Order Reaction for Mixed Flow is usually measured using the Cubic Meter per Mole Second[m³/(mol*s)] for Second Order Reaction Rate Constant. Cubic Meter per Kilomole Millisecond[m³/(mol*s)], Liter per Mole Second[m³/(mol*s)], Liter per Mole Millisecond[m³/(mol*s)] are the few other units in which Rate Constant for Second Order Reaction for Mixed Flow can be measured.
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