What is continuous stirred-tank reactor?
The continuous stirred-tank reactor (CSTR), also known as vat- or backmix reactor, mixed flow reactor (MFR), or a continuous-flow stirred-tank reactor (CFSTR), is a common model for a chemical reactor in chemical engineering and environmental engineering. A CSTR often refers to a model used to estimate the key unit operation variables when using a continuous agitated-tank reactor to reach a specified output. The mathematical model works for all fluids: liquids, gases, and slurries.
How to Calculate Rate Constant for Second Order Reaction for Mixed Flow?
Rate Constant for Second Order Reaction for Mixed Flow calculator 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 calculate 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 calculate Rate Constant for Second Order Reaction for Mixed Flow using this online calculator? To use this online calculator 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. Here is how the Rate Constant for Second Order Reaction for Mixed Flow calculation can be explained with given input values -> 13543.03 = (1/0.0612*81)*((0.702*(1+(0.21*0.702))^2)/(1-0.702)^2).