What is Plug Flow Reactor?
The plug flow reactor model (PFR, sometimes called continuous tubular reactor, CTR, or piston flow reactors) is a model used to describe chemical reactions in continuous, flowing systems of cylindrical geometry. The PFR model is used to predict the behavior of chemical reactors of such design, so that key reactor variables, such as the dimensions of the reactor, can be estimated.
How to Calculate Rate Constant for First Order Reaction using Reactant Concentration for Plug Flow?
Rate Constant for First Order Reaction using Reactant Concentration for Plug Flow calculator uses Rate Constant for First Order in Batch Reactor = (1/Space Time in Batch Reactor)*ln(Initial Reactant Concentration in Batch Reactor/Reactant Conc at any Time in Batch Reactor) to calculate the Rate Constant for First Order in Batch Reactor, The Rate Constant for First Order Reaction using Reactant Concentration for Plug Flow formula is defined as the constant of proportionality which gives the relation between rate of reaction and the first power of concentration of one of the reactants. Rate Constant for First Order in Batch Reactor is denoted by kbatch symbol.
How to calculate Rate Constant for First Order Reaction using Reactant Concentration for Plug Flow using this online calculator? To use this online calculator for Rate Constant for First Order Reaction using Reactant Concentration for Plug Flow, enter Space Time in Batch Reactor (𝛕Batch), Initial Reactant Concentration in Batch Reactor (Co Batch) & Reactant Conc at any Time in Batch Reactor (CBatch) and hit the calculate button. Here is how the Rate Constant for First Order Reaction using Reactant Concentration for Plug Flow calculation can be explained with given input values -> 24.68539 = (1/0.051)*ln(81.5/23).