| You have been given the partially completed flowchart for the combustion of propane and are told 85% conversion of propane occurs and that all the oxygen is consumed. You may assume steady-state and no side reactions. Complete a-d. 3. Governing reaction: C,Hs (g) + 502 (g)→ 3CO2 (g) + 4H20 (v) n, CHs (g, 25 °C, 1 atm) ng = 45 mol C:Hs (g, 210 °C ,1 atm) n4 mol CO: (g, 210 °C, 1 atm) n5 mol H;0 (v, 210 °C, 1 atm) n, mol O2 (g, 125 °C, 1 atm)

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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Please help me with this one as soon as you can and show all the work for the enthalpy table. I provided the problem statement and the enthalpy table I need filled out please show the work for it.
3.
You have been given the partially completed flowchart for the combustion of
propane and are told 85% conversion of propane occurs and that all the oxygen is consumed.
You may assume steady-state and no side reactions. Complete a-d.
Governing reaction: C;Hs (g) + 502 (g) 3CO2 (g) + 4H2O (v)
n, C;Hs (g, 25 °C, 1 atm)
n3 = 45 mol C:Hs (g, 210 °C,1 atm)
n4 mol CO: (g, 210 °C, 1 atm)
ng mol H20 (v, 210 °C, 1 atm)
n2 mol O2 (g, 125 °C, 1 atm)
Transcribed Image Text:3. You have been given the partially completed flowchart for the combustion of propane and are told 85% conversion of propane occurs and that all the oxygen is consumed. You may assume steady-state and no side reactions. Complete a-d. Governing reaction: C;Hs (g) + 502 (g) 3CO2 (g) + 4H2O (v) n, C;Hs (g, 25 °C, 1 atm) n3 = 45 mol C:Hs (g, 210 °C,1 atm) n4 mol CO: (g, 210 °C, 1 atm) ng mol H20 (v, 210 °C, 1 atm) n2 mol O2 (g, 125 °C, 1 atm)
d.
| Complete the inlet-outlet enthalpy table and solve the energy balance for this
process.
Solving with (circle one):
Heat of reaction method
Heat of formation meth
Reference state(s):
A in (kJ/mol]
Ĥ out (kJ/mol]
Molecular
Nin (mol]
Nout (mol]
Species
Transcribed Image Text:d. | Complete the inlet-outlet enthalpy table and solve the energy balance for this process. Solving with (circle one): Heat of reaction method Heat of formation meth Reference state(s): A in (kJ/mol] Ĥ out (kJ/mol] Molecular Nin (mol] Nout (mol] Species
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