The transfer function between reactor outlet temperature (T) and reactant inlet concentration (CA) in a chemical reactor is given below: XY = 98 A sudden decrease of 10 mol/liter occurs in the reactor inlet concentration. If the initial value of the reactor outlet temperature is 150°C, what is its new steady-state value and how long does it take to reach this temperature?

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
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The transfer function between reactor outlet temperature (T) and reactant inlet concentration (CA) in a chemical reactor is given below: XY = 98 A sudden decrease of 10 mol/liter occurs in the reactor inlet concentration. If the initial value of the reactor outlet temperature is 150°C, what is its new steady-state value and how long does it take to reach this temperature?
3. Bir kimyasal reaktörde reaktör çıkış sıcaklığı (T) ve reaktant girdi derişimi (CA)
arasındaki transfer fonksiyonu aşağıda verilmektedir (transfer fonksiyonundaki
XY öğrenci numaranızın son 2 hanesidir).
T' XY
CA 6s +2
=
Reaktör giriş derişiminde aniden 10 mol/litre azalış meydana gelmektedir. Reaktör
çıkış sıcaklığının ilk değeri 150 °C ise yeni kararlı haldeki değeri nedir ve ne kadar
sürede bu sıcaklığa ulaşır?
Transcribed Image Text:3. Bir kimyasal reaktörde reaktör çıkış sıcaklığı (T) ve reaktant girdi derişimi (CA) arasındaki transfer fonksiyonu aşağıda verilmektedir (transfer fonksiyonundaki XY öğrenci numaranızın son 2 hanesidir). T' XY CA 6s +2 = Reaktör giriş derişiminde aniden 10 mol/litre azalış meydana gelmektedir. Reaktör çıkış sıcaklığının ilk değeri 150 °C ise yeni kararlı haldeki değeri nedir ve ne kadar sürede bu sıcaklığa ulaşır?
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