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Space Time for Plug Flow Reactor is the time taken by the amount of fluid to either completely enter or completely exit the plug flow reactor. Check FAQs
𝛕p=(1Cok'')((CoC)-1)
𝛕p - Space Time for Plug Flow Reactor?Co - Initial Reactant Concentration?k'' - Rate Constant for Second Order Reaction?C - Reactant Concentration?

Space Time for Second Order Reaction for Plug Flow or Infinite Reactors Example

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With units
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Here is how the Space Time for Second Order Reaction for Plug Flow or Infinite Reactors equation looks like with Values.

Here is how the Space Time for Second Order Reaction for Plug Flow or Infinite Reactors equation looks like with Units.

Here is how the Space Time for Second Order Reaction for Plug Flow or Infinite Reactors equation looks like.

0.4704Edit=(180Edit0.062Edit)((80Edit24Edit)-1)
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Space Time for Second Order Reaction for Plug Flow or Infinite Reactors Solution

Follow our step by step solution on how to calculate Space Time for Second Order Reaction for Plug Flow or Infinite Reactors?

FIRST Step Consider the formula
𝛕p=(1Cok'')((CoC)-1)
Next Step Substitute values of Variables
𝛕p=(180mol/m³0.062m³/(mol*s))((80mol/m³24mol/m³)-1)
Next Step Prepare to Evaluate
𝛕p=(1800.062)((8024)-1)
Next Step Evaluate
𝛕p=0.470430107526882s
LAST Step Rounding Answer
𝛕p=0.4704s

Space Time for Second Order Reaction for Plug Flow or Infinite Reactors Formula Elements

Variables
Space Time for Plug Flow Reactor
Space Time for Plug Flow Reactor is the time taken by the amount of fluid to either completely enter or completely exit the plug flow reactor.
Symbol: 𝛕p
Measurement: TimeUnit: s
Note: Value can be positive or negative.
Initial Reactant Concentration
The Initial Reactant Concentration refers to the amount of reactant present in the solvent before the considered process.
Symbol: Co
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Rate Constant for Second Order Reaction
The Rate Constant for Second Order Reaction is defined as the average rate of the reaction per concentration of the reactant having power raised to 2.
Symbol: k''
Measurement: Second Order Reaction Rate ConstantUnit: m³/(mol*s)
Note: Value can be positive or negative.
Reactant Concentration
The Reactant Concentration refers to the amount of reactant present in the solvent at any given point of time during the process.
Symbol: C
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.

Other Formulas to find Space Time for Plug Flow Reactor

​Go Space Time for First Order Reaction for Plug Flow or for Infinite Reactors
𝛕p=(1k')ln(CoC)

Other formulas in Design for Single Reactions category

​Go Initial Reactant Concentration for First Order Reaction in Vessel i
C i-1=Ci(1+(k'trC2'))
​Go Initial Reactant Concentration for First Order Reaction using Reaction Rate
Co=trC2'riXi-1-Xi
​Go Initial Reactant Concentration for Second Order Reaction for Plug Flow or Infinite Reactors
Co=1(1C)-(k''𝛕p)
​Go Reactant Concentration for First Order Reaction in Vessel i
Ci=C i-11+(k'trC2')

How to Evaluate Space Time for Second Order Reaction for Plug Flow or Infinite Reactors?

Space Time for Second Order Reaction for Plug Flow or Infinite Reactors evaluator uses Space Time for Plug Flow Reactor = (1/(Initial Reactant Concentration*Rate Constant for Second Order Reaction))*((Initial Reactant Concentration/Reactant Concentration)-1) to evaluate the Space Time for Plug Flow Reactor, The Space Time for Second Order Reaction for Plug Flow or Infinite Reactors formula is defined as the time necessary to process volume of reactor fluid for first order reaction where fractional volume change is considerable for plug flow. Space Time for Plug Flow Reactor is denoted by 𝛕p symbol.

How to evaluate Space Time for Second Order Reaction for Plug Flow or Infinite Reactors using this online evaluator? To use this online evaluator for Space Time for Second Order Reaction for Plug Flow or Infinite Reactors, enter Initial Reactant Concentration (Co), Rate Constant for Second Order Reaction (k'') & Reactant Concentration (C) and hit the calculate button.

FAQs on Space Time for Second Order Reaction for Plug Flow or Infinite Reactors

What is the formula to find Space Time for Second Order Reaction for Plug Flow or Infinite Reactors?
The formula of Space Time for Second Order Reaction for Plug Flow or Infinite Reactors is expressed as Space Time for Plug Flow Reactor = (1/(Initial Reactant Concentration*Rate Constant for Second Order Reaction))*((Initial Reactant Concentration/Reactant Concentration)-1). Here is an example- 0.47043 = (1/(80*0.062))*((80/24)-1).
How to calculate Space Time for Second Order Reaction for Plug Flow or Infinite Reactors?
With Initial Reactant Concentration (Co), Rate Constant for Second Order Reaction (k'') & Reactant Concentration (C) we can find Space Time for Second Order Reaction for Plug Flow or Infinite Reactors using the formula - Space Time for Plug Flow Reactor = (1/(Initial Reactant Concentration*Rate Constant for Second Order Reaction))*((Initial Reactant Concentration/Reactant Concentration)-1).
What are the other ways to Calculate Space Time for Plug Flow Reactor?
Here are the different ways to Calculate Space Time for Plug Flow Reactor-
  • Space Time for Plug Flow Reactor=(1/Rate Constant for First Order Reaction)*ln(Initial Reactant Concentration/Reactant Concentration)OpenImg
Can the Space Time for Second Order Reaction for Plug Flow or Infinite Reactors be negative?
Yes, the Space Time for Second Order Reaction for Plug Flow or Infinite Reactors, measured in Time can be negative.
Which unit is used to measure Space Time for Second Order Reaction for Plug Flow or Infinite Reactors?
Space Time for Second Order Reaction for Plug Flow or Infinite Reactors is usually measured using the Second[s] for Time. Millisecond[s], Microsecond[s], Nanosecond[s] are the few other units in which Space Time for Second Order Reaction for Plug Flow or Infinite Reactors can be measured.
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