subject
Engineering, 08.10.2019 06:00 jane078

Question 1. diffusion & reaction in spherical coordinates. consider a porous spherical catalyst particle with radius r, under a constant stream of a reactant a. within the particle, reactor occurs at the surface of tortuous porous passages. assume that the reaction occurs homogeneously within the porous sphere, and is first order with respect to a, in which ra-k' a ca where a is constant representing the available catalytic surface area per unit volume. the surface concentration within the porous sphere, atr-r, is given as car. a) derive the governing equation for this problem, either from a shell-balance or from governing equations. b) what are the boundary conditions? c) place both the governing equation as well as boundary conditions in relevant dimensionless variables: use г for concentration, and n for radius. d) what is the relevant thiele modulus for this problem? e) find the concentration profile γ as a function of η within the particle find the total molar flow rate of species a across the surface of the particle. f) g) find an expression for the effectiveness factor of this catalyst particle. h) make a plot of the effectiveness factor as a function of the thiele modulus you defined. hint: for solving ode problems in spherical coordinates, the transformation y(r)-fr) is often useful, to simplify the equation.

ansver
Answers: 2

Another question on Engineering

question
Engineering, 04.07.2019 12:10
On a average work day more than work place firs are reorted
Answers: 1
question
Engineering, 04.07.2019 18:10
The mass flow rate of the fluid remains constant in all steady flow process. a)- true b)- false
Answers: 1
question
Engineering, 04.07.2019 18:10
Burgers vector is generally parallel to the dislocation line. a)-true b)-false
Answers: 2
question
Engineering, 04.07.2019 18:10
An ideal otto cycle with air as the working fluid has a compression ratio of 8. the minimum and maximum temperatures in the cycle are 300 k and 1340 k. use constant specific heats at room temperature to determine (a) the amount of heat transferred to the air during the heat- addition kj/kg, (b) the thermal efficiency, and (c) the thermal efficiency of a carnot cycle ope limits. process, in rating between the same temperature
Answers: 2
You know the right answer?
Question 1. diffusion & reaction in spherical coordinates. consider a porous spherical catalyst...
Questions
question
Physics, 26.03.2021 04:30
question
Mathematics, 26.03.2021 04:30
question
Mathematics, 26.03.2021 04:30
Questions on the website: 13722367