. Methanol is produced by reacting hydrogen and carbon monoxide at high pressure. The feed gas to a reactor is composed of 80 mol % H2 and 20 mol % cO. The system reaches equilibrium at 550 K and 100 bar. The standard Gibbs energy change of reaction at 550 K is 33.383 kJ/mol. co(g)+2H, (g)→CH,OH(g) By assuming the equilibrium mixture is an ideal solution, determine the composition of each species at equilibrium.

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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1. Methanol is produced by reacting hydrogen and carbon monoxide at high pressure. The feed gas
to a reactor is composed of 80 mol % H2 and 20 mol % CO. The system reaches equilibrium at
550 K and 100 bar. The standard Gibbs energy change of reaction at 550 K is 33.383 kJ/mol.
со(g) +2H, (g) ->сH,оН ()
By assuming the equilibrium mixture is an ideal solution, determine the composition of each
species at equilibrium.
Transcribed Image Text:1. Methanol is produced by reacting hydrogen and carbon monoxide at high pressure. The feed gas to a reactor is composed of 80 mol % H2 and 20 mol % CO. The system reaches equilibrium at 550 K and 100 bar. The standard Gibbs energy change of reaction at 550 K is 33.383 kJ/mol. со(g) +2H, (g) ->сH,оН () By assuming the equilibrium mixture is an ideal solution, determine the composition of each species at equilibrium.
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