Design of Absorption Tower A mixture of gas containing 90.5% mole % Hydrogen peroxide (H₂O2) and 9.5% mole % Methanol (CH3OH) is to be separated. The absorption process is applied to separate the components. The separation is carried out by using acetone (CH3COCH3) as a solvent. The H₂O2 - CH3OH mixture is subjected to enter the absorption tower from the bottom of the column with a flow rate 7455 m³/h, at 286K and 1 atm. Acetone enters the column from the top with a flow rate of 8000 kg/h and at 286 K. 87 % of methanol is supposed to be recovered. It is suggested that the gas stream should not exceed a permissible pressure drop of 0.00025 N/mm². Number of ideal stages; Flow Parameter; Tower diameter. The mass flow rate of liquid. Height Equivalent Transfer Plate (HETP) (i) (ii) (iii) (iv) (v)

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
icon
Related questions
Question
Design of Absorption Tower
A mixture of gas containing 90.5% mole % Hydrogen peroxide (H₂O2) and 9.5% mole % Methanol
(CH3OH) is to be separated. The absorption process is applied to separate the components. The
separation is carried out by using acetone (CH3COCH3) as a solvent. The H₂O2 - CH3OH mixture
is subjected to enter the absorption tower from the bottom of the column with a flow rate 7455
m³/h, at 286K and 1 atm. Acetone enters the column from the top with a flow rate of 8000 kg/h
and at 286 K. 87 % of methanol is supposed to be recovered. It is suggested that the gas stream
should not exceed a permissible pressure drop of 0.00025 N/mm².
Number of ideal stages;
Flow Parameter;
(i)
(ii)
(iii)
(iv)
(v)
(vi)
(vii)
(viii)
Tower diameter.
The mass flow rate of liquid.
Height Equivalent Transfer Plate (HETP)
Interfacial area of packing per unit volume;
Scaled sketch of packed bed absorption tower with label;
Justify if Your absorption column design is appropriate and effective.
Transcribed Image Text:Design of Absorption Tower A mixture of gas containing 90.5% mole % Hydrogen peroxide (H₂O2) and 9.5% mole % Methanol (CH3OH) is to be separated. The absorption process is applied to separate the components. The separation is carried out by using acetone (CH3COCH3) as a solvent. The H₂O2 - CH3OH mixture is subjected to enter the absorption tower from the bottom of the column with a flow rate 7455 m³/h, at 286K and 1 atm. Acetone enters the column from the top with a flow rate of 8000 kg/h and at 286 K. 87 % of methanol is supposed to be recovered. It is suggested that the gas stream should not exceed a permissible pressure drop of 0.00025 N/mm². Number of ideal stages; Flow Parameter; (i) (ii) (iii) (iv) (v) (vi) (vii) (viii) Tower diameter. The mass flow rate of liquid. Height Equivalent Transfer Plate (HETP) Interfacial area of packing per unit volume; Scaled sketch of packed bed absorption tower with label; Justify if Your absorption column design is appropriate and effective.
Expert Solution
steps

Step by step

Solved in 7 steps with 19 images

Blurred answer
Recommended textbooks for you
Introduction to Chemical Engineering Thermodynami…
Introduction to Chemical Engineering Thermodynami…
Chemical Engineering
ISBN:
9781259696527
Author:
J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:
McGraw-Hill Education
Elementary Principles of Chemical Processes, Bind…
Elementary Principles of Chemical Processes, Bind…
Chemical Engineering
ISBN:
9781118431221
Author:
Richard M. Felder, Ronald W. Rousseau, Lisa G. Bullard
Publisher:
WILEY
Elements of Chemical Reaction Engineering (5th Ed…
Elements of Chemical Reaction Engineering (5th Ed…
Chemical Engineering
ISBN:
9780133887518
Author:
H. Scott Fogler
Publisher:
Prentice Hall
Process Dynamics and Control, 4e
Process Dynamics and Control, 4e
Chemical Engineering
ISBN:
9781119285915
Author:
Seborg
Publisher:
WILEY
Industrial Plastics: Theory and Applications
Industrial Plastics: Theory and Applications
Chemical Engineering
ISBN:
9781285061238
Author:
Lokensgard, Erik
Publisher:
Delmar Cengage Learning
Unit Operations of Chemical Engineering
Unit Operations of Chemical Engineering
Chemical Engineering
ISBN:
9780072848236
Author:
Warren McCabe, Julian C. Smith, Peter Harriott
Publisher:
McGraw-Hill Companies, The