Question: Ethylene oxide ( EO ) ( C 2 H 4 O ) , also known as oxirane, is a colorless, flammable gas with a sweet,
Ethylene oxide EO also known as oxirane, is a colorless, flammable gas with a sweet,
etherlike smell. EO is an important industrial chemical used primarily to make ethylene glycol a
key ingredient in antifreeze and polyester fiber and other chemicals, such as surfactants, detergents,
and solvents.
In global production of EO was nearly millions of tons and sexpected to grow at a steady
CAGR of during the forecast period until With a selling price of $ per tonne, the
commercial value of is around $ billion.
The primary route for EO production involves the direct vapor phase oxidation of ethylene in the
presence of a silver catalyst:
This reaction is highly exothermic and requires careful control to manage the risk of runaway
reactions. The process typically involves a recovery stage to separate EO from water and other
byproducts.
We want to design a reactor achieve a desired conversion of ethylene. Ethylene and oxygen are fed
in stoichiometric proportions to a packedbed reactor operated isothermally at
Ethylene and oxygen are fed in stoichiometric proportions to a packedbed reactor operated isother
mally at Ethylene is fed at a rate of at a pressure of atmkPa It is proposed
to use banks of diameter schedule tubes packed with catalyst with tubes per bank.
Consequently, the molar flow rate to each tube is to be
The rate law for the reaction is
with at The heat of reaction, is and the activation
energy, is
Questions
Isobaric reactor
Using the mole balances developed in portfolio determine the weight of catalyst required
to achieve conversion in a PBR Show your working by following the reaction engineering
algorithm. State your assumptions if any.
Effect of pressure drop
marks
As this is a gas phase reaction carried out in a PBR there is a significant pressure drop. The
properties of the reacting fluid are to be considered identical to those of air at this temperature
and pressure. The density of the catalyst particles is the bed void
fraction is and the gas density is For these catalyst properties, the pressure
drop parameter is
a How will the equations change when you consider pressure drop?
b Draw the profiles of conversion, volumetric flow rate ratio and pressure ratio
as a function of catalyst weight.
c Estimate the catalyst weight required to achieve conversion considering pressure
drop. Compare the results with those obtained in question help
Step by Step Solution
There are 3 Steps involved in it
1 Expert Approved Answer
Step: 1 Unlock
Question Has Been Solved by an Expert!
Get step-by-step solutions from verified subject matter experts
Step: 2 Unlock
Step: 3 Unlock
