Figure.Q1 shows an evaporator to concentrate the sodium hydroxide solution at 90 °C The volume flowrate which enters the evaporator is 10000 kg/h of NaOH solution and 8000 kg/h of steam has been used Calculate the mass flow rate of the concentrated NaOH solution ii) Determine the steam economy of the evaporator. ii) If the temperature of steam increases, what chahges happen in steam economy T=120 °C 50% NaOH 20% NaOH Fig.Q1

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
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Figure.Q1 shows an evaporator to concentrate the sodium hydroxide solution at 90 °C The volume flowrate
which enters the evaporator is 10000 kg/h of NaOH solution and 8000 kg/h of steam has been used
Calculate the mass flow rate of the concentrated NaOH solution.
i)
Determine the steam economy of the evaporator.
iii) If the temperature of steam increases, what chafges happen in steam economy
T;=120 °C
50% NaOH
20% NaOH
Fig.Q1
C
F5
F7
F8
F9
F10
F11
F12
F6
&
*
Transcribed Image Text:Figure.Q1 shows an evaporator to concentrate the sodium hydroxide solution at 90 °C The volume flowrate which enters the evaporator is 10000 kg/h of NaOH solution and 8000 kg/h of steam has been used Calculate the mass flow rate of the concentrated NaOH solution. i) Determine the steam economy of the evaporator. iii) If the temperature of steam increases, what chafges happen in steam economy T;=120 °C 50% NaOH 20% NaOH Fig.Q1 C F5 F7 F8 F9 F10 F11 F12 F6 & *
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