2. Ethanol is produced by the hydration of ethylene according to the first reaction below. However, some of the products are converted to diethyl ether according to the second reaction. C2H4 + H20 – C2H;0H 2C,H50H (C2H5)20 + H20 The feed to the reactor contains ethylene, steam, and N2 An effluent analysis is given in the following table: C2H4 Component %mol C2H;OH 2.95 H20 (C;Hs)>O N2 39.12 45.08 0.27 12.58 With a basis of 100 kmol of effluent, determine the following: ) Determine the extent of both reactions. a.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
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2. Ethanol is produced by the hydration of ethylene according to the first reaction below.
However, some of the products are converted to diethyl ether according to the second
reaction.
C2H4 + H20 - C,H÷OH
2C,H;OH (C2H5)20 + H20
The feed to the reactor contains ethylene, steam, and N2. An effluent analysis is given in
the following table:
H2O
Component
%mol
With a basis of 100 kmol of effluent, determine the following:
CH;OH
2.95
(CHs)20
C2H4
39.12
N2
45.08
0.27
12.58
а.
*:) Determine the extent of both reactions.
Transcribed Image Text:2. Ethanol is produced by the hydration of ethylene according to the first reaction below. However, some of the products are converted to diethyl ether according to the second reaction. C2H4 + H20 - C,H÷OH 2C,H;OH (C2H5)20 + H20 The feed to the reactor contains ethylene, steam, and N2. An effluent analysis is given in the following table: H2O Component %mol With a basis of 100 kmol of effluent, determine the following: CH;OH 2.95 (CHs)20 C2H4 39.12 N2 45.08 0.27 12.58 а. *:) Determine the extent of both reactions.
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