(a) Figure Q2.1 illustrates the Process Flow Diagram (PFD) to produce ethane from ethanol. Throughout this system, ethanol is feed to continuous reactor with presence of sulphuric acid catalyzer to produce ethylene. Distillation process will be applied to separate ethylene-H2O mixture. Then, ethylene as a top product is condensate by condenser to perform liquid ethylene. Hydrogenation of ethylene applies in another reactor with presence of Nickel catalyzer to produce ethane as a final product. R-100 Reactor P-100 Pump L-100 Distillation Column E-100 Condenser P-101 Pump R-101 Reactor Hot water out Ethylene lig. Ethylene E-100 V-104 Cold water -100 CV-101 in CV-100 V-105 Ethanol V-101 38 20 V-102 H,S0, Hydrogen V-100 V-103 V-107 Ni R-100 Ethane R-101 31.0 P-101 P100 Figure Q1.1 A Process Flow Diagram (PFD) of ethane production. (i) Develop a Block Flow Diagram (BFD) for this process. (ii) Briefly explain the reasons why we need to put a group of valves (V-101, CV-100, V-102, V-103) through Stream No. 5.

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
Problem 1.1P
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(a) Figure Q2.1 illustrates the Process Flow Diagram (PFD) to produce ethane from ethanol.
Throughout this system, ethanol is feed to continuous reactor with presence of sulphuric
acid catalyzer to produce ethylene. Distillation process will be applied to separate
ethylene-H2O mixture. Then, ethylene as a top product is condensate by condenser to
perform liquid ethylene. Hydrogenation of ethylene applies in another reactor with
presence of Nickel catalyzer to produce ethane as a final product.
R-100
E-100
Condenser
P-101
Pump
R-101
P-100
Pump
T-100
Distillation Column
Reactor
Reactor
Hot water
out
Ethylene
Ethylene lig.
E-100
V-104
Cold
water
T-100
CV-101
V-106
CV-100
in
28
V-105
Ethanol
V-101
38
20
V-102
H,SO,
Hydrogen
(9
V-100
V-103
V-107
Ni
R-100
Ethane
R-101
35
$1.0
35
H,0
P-101
Р-100
Figure Q1.1 A Process Flow Diagram (PFD) of ethane production.
(i) Develop a Block Flow Diagram (BFD) for this process.
(ii) Briefly explain the reasons why we need to put a group of valves (V-101, CV-100,
V-102, V-103) through Stream No. 5.
Transcribed Image Text:(a) Figure Q2.1 illustrates the Process Flow Diagram (PFD) to produce ethane from ethanol. Throughout this system, ethanol is feed to continuous reactor with presence of sulphuric acid catalyzer to produce ethylene. Distillation process will be applied to separate ethylene-H2O mixture. Then, ethylene as a top product is condensate by condenser to perform liquid ethylene. Hydrogenation of ethylene applies in another reactor with presence of Nickel catalyzer to produce ethane as a final product. R-100 E-100 Condenser P-101 Pump R-101 P-100 Pump T-100 Distillation Column Reactor Reactor Hot water out Ethylene Ethylene lig. E-100 V-104 Cold water T-100 CV-101 V-106 CV-100 in 28 V-105 Ethanol V-101 38 20 V-102 H,SO, Hydrogen (9 V-100 V-103 V-107 Ni R-100 Ethane R-101 35 $1.0 35 H,0 P-101 Р-100 Figure Q1.1 A Process Flow Diagram (PFD) of ethane production. (i) Develop a Block Flow Diagram (BFD) for this process. (ii) Briefly explain the reasons why we need to put a group of valves (V-101, CV-100, V-102, V-103) through Stream No. 5.
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