PROBLEM 5.1. Cooling of Carbon Monoxide Calculate the rate of cooling (kW) required to bring 300 kg/min of carbon monoxide from 450°C to 50°C, performing calculations using (a) Handout D- Enthalpy of Selected Gases and (b) Handout E-Heat Capac Equations. Important assumption(s) for energy balance a. Calculations based on Enthalpy of Selected Gases Molar flowrate of CO (mol/s) Enthalpy of CO at 450°C (kJ/mol) gnivollol oli tol sislusles greed an bat sorg to lopi 001 gr AH from 450°C to 50°C (kJ/mol) Enthalpy of CO at 50°C (kJ/mol) b. Calculations based on Heat Capacity Equation Heat Capacity Data for Carbon Monoxide Value of a Value of b Rate of Cooling, Q (kW) Value of c (i) berups mora to amulo (m) non lo smalo Rate of Cooling, Q (kW) Value of d
PROBLEM 5.1. Cooling of Carbon Monoxide Calculate the rate of cooling (kW) required to bring 300 kg/min of carbon monoxide from 450°C to 50°C, performing calculations using (a) Handout D- Enthalpy of Selected Gases and (b) Handout E-Heat Capac Equations. Important assumption(s) for energy balance a. Calculations based on Enthalpy of Selected Gases Molar flowrate of CO (mol/s) Enthalpy of CO at 450°C (kJ/mol) gnivollol oli tol sislusles greed an bat sorg to lopi 001 gr AH from 450°C to 50°C (kJ/mol) Enthalpy of CO at 50°C (kJ/mol) b. Calculations based on Heat Capacity Equation Heat Capacity Data for Carbon Monoxide Value of a Value of b Rate of Cooling, Q (kW) Value of c (i) berups mora to amulo (m) non lo smalo Rate of Cooling, Q (kW) Value of d
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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Transcribed Image Text:submission. Points may not be given to any item without a
with erasures will not be considered.
(lomilal) TOO roludra3
PROBLEM 5.1. Cooling of Carbon Monoxide
Onger!
Calculate the rate of cooling (kW) required to bring 300 kg/min of carbon monoxide from 450°C to 50°C,
performing calculations using (a) Handout D- Enthalpy of Selected Gases and (b) Handout E-Heat Capacit
Equations.
Important assumption(s)
for energy balance
Molar flowrate of CO (mol/s)
a. Calculations based on Enthalpy of Selected Gases
Enthalpy of CO at 450°C
(kJ/mol)
(lom\taly / zgiedreć
AH from 450°C to
50°℃ (kJ/mol)
entwallol orli 10) sislaoles grand an bet nunqor to lont 001 gnita
Enthalpy of CO at 50°C
(kJ/mol)
b. Calculations based on Heat Capacity Equation
Heat Capacity Data for Carbon Monoxide
Value of a
Value of b
Rate of Cooling,
Q (kW)
instorme)
Value of c
(m) berupay moralo amulo
(m) onaqorq lo smaluv
Rate of Cooling,
Q (kW)
Value of d
University of the Philippines Los Baños Department of Chemical Engineering | MEBAMBASEJR 2023.05.12 point
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Step 1: Determine the given variables
VIEWStep 2: Determine the enthalpy of CO at given temperature using enthalpy of selected gases data
VIEWStep 3: Determine the cooling rate using enthalpy of selected gases data
VIEWStep 4: Determine the enthalpy of CO using heat capacity equation
VIEWStep 5: Determine the cooling rate using specific heat data
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