Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes Formula

Fx Copy
LaTeX Copy
Initial Reactant Conc. refers to the amount of reactant present in the solvent before the considered process. Check FAQs
CAo=CAexp(𝛕pkplug flow)
CAo - Initial Reactant Conc.?CA - Reactant Concentration?𝛕p - Space Time for Plug Flow Reactor?kplug flow - Rate Constant for Plug Flow Reactor?

Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes Example

With values
With units
Only example

Here is how the Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes equation looks like with Values.

Here is how the Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes equation looks like with Units.

Here is how the Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes equation looks like.

95.7273Edit=24Editexp(0.069Edit20.05Edit)
You are here -
HomeIcon Home » Category Engineering » Category Chemical Engineering » Category Chemical Reaction Engineering » fx Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes

Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes Solution

Follow our step by step solution on how to calculate Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes?

FIRST Step Consider the formula
CAo=CAexp(𝛕pkplug flow)
Next Step Substitute values of Variables
CAo=24mol/m³exp(0.069s20.05mol/m³*s)
Next Step Prepare to Evaluate
CAo=24exp(0.06920.05)
Next Step Evaluate
CAo=95.727329303289mol/m³
LAST Step Rounding Answer
CAo=95.7273mol/m³

Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes Formula Elements

Variables
Functions
Initial Reactant Conc.
Initial Reactant Conc. refers to the amount of reactant present in the solvent before the considered process.
Symbol: CAo
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
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: CA
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
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 should be greater than 0.
Rate Constant for Plug Flow Reactor
Rate Constant for Plug Flow Reactor is the proportional constant of the particular reaction in the reactor.
Symbol: kplug flow
Measurement: Reaction RateUnit: mol/m³*s
Note: Value should be greater than 0.
exp
n an exponential function, the value of the function changes by a constant factor for every unit change in the independent variable.
Syntax: exp(Number)

Other formulas in Basics of Non Ideal Flow category

​Go Area under C-Pulse Curve
A=Mv0
​Go Mean of C Pulse Curve
T=Vv0
​Go Exit Age Distribution Curve from C Pulse Curve
E=CpulseMv0
​Go F Curve
F=CstepCA0

How to Evaluate Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes?

Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes evaluator uses Initial Reactant Conc. = Reactant Concentration*exp(Space Time for Plug Flow Reactor*Rate Constant for Plug Flow Reactor) to evaluate the Initial Reactant Conc., The Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes formula is defined as the exponential relation between space, time and concentration. Initial Reactant Conc. is denoted by CAo symbol.

How to evaluate Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes using this online evaluator? To use this online evaluator for Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes, enter Reactant Concentration (CA), Space Time for Plug Flow Reactor (𝛕p) & Rate Constant for Plug Flow Reactor (kplug flow) and hit the calculate button.

FAQs on Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes

What is the formula to find Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes?
The formula of Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes is expressed as Initial Reactant Conc. = Reactant Concentration*exp(Space Time for Plug Flow Reactor*Rate Constant for Plug Flow Reactor). Here is an example- 95.72733 = 24*exp(0.069*20.05).
How to calculate Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes?
With Reactant Concentration (CA), Space Time for Plug Flow Reactor (𝛕p) & Rate Constant for Plug Flow Reactor (kplug flow) we can find Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes using the formula - Initial Reactant Conc. = Reactant Concentration*exp(Space Time for Plug Flow Reactor*Rate Constant for Plug Flow Reactor). This formula also uses Exponential Growth Function function(s).
Can the Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes be negative?
No, the Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes, measured in Molar Concentration cannot be negative.
Which unit is used to measure Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes?
Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes is usually measured using the Mole per Cubic Meter[mol/m³] for Molar Concentration. Mole per Liter[mol/m³], Mole per Cubic Millimeter[mol/m³], Kilomole per Cubic Meter[mol/m³] are the few other units in which Initial Concentration of Reactant in Plug Flow Reactant with Negligible Density Changes can be measured.
Copied!