CH, (g) + 202 (g) → co2(g)+ 2H,0(g) .. Eq. Q7 ...... Q= 0 CH4(g)T=100°C T= ? out Co,(g) 0,e) H,0(2) N,(2) Air T=25°C Furnace 0.21 0, 0.79 N, 1.00

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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100%
Methane at 100°C is burned with 100% excess air which is at 25°C in an insulated furnace, as illustrated in Eq.Q7 and Figure Q7. Refer to the appendices, caleulate the adiabatic flame temperature.
CH4 (g) + 202 (g) → co,(g) + 2H,0(g)
.... Eq. Q7
Q= 0
CH4(2)T=100°C
T= ?
out
co,()
Air T=25°C
Furnace
0.21 02
0.79 N,
1.00
H,0(2)
N,(2)
Figure Q7
Transcribed Image Text:CH4 (g) + 202 (g) → co,(g) + 2H,0(g) .... Eq. Q7 Q= 0 CH4(2)T=100°C T= ? out co,() Air T=25°C Furnace 0.21 02 0.79 N, 1.00 H,0(2) N,(2) Figure Q7
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