Introduction to Chemical Engineering Thermodynamics
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: McGraw-Hill Education
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Chapter 4, Problem 4.15P
Interpretation Introduction

Interpretation:

Calculate the heat exchanger duty in kW for methanol if one hundred kmol per hour of its sub cooled liquid at 300K and 3bar is superheated to 500K in a steady flow heat exchanger.

Concept Introduction :

Since methanol is converted to its subcooled form to superheated form, it will go through vaporization after reaching its saturation temperature, so total heat required to change the phase will be

  Q=sensible heat required to change temperature of subcooled liquid to saturation temperature+Latent heat liberated due to phase change+sensible heat required to change saturation temperature to temperature of superheated liquid  

The sensible heat in steady-flow exchangers for agas is calculated as:

  Q=ΔH=RT0TΔCPRdT......(1)

Where ΔH is heat of reaction at any temperature T .

and

  T0TΔCPRdT=AT0(τ1)+B2T02(τ21)+C3T03(τ31)+DT0(τ1τ)......(2)

Where τ=TT0

And latent heat or heat of vaporization at any temperature from known value at a single temperature is calculated as:

  ΔHnRTn=1.092(lnPC1.013)0.93Trn

And

  ΔH2ΔH1=(1 T r21 T r1)0.38

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