Sulfur dioxide reacts with oxygen to form sulfur trioxide. This reaction is carried out isothermally at 250°C and at P = 5 atm in a plug flow reactor. Oxygen is used in excess, with a mole flow rate twice the stoichiometric flow rate. The reaction mixture behaves like an ideal gas. If a feed gas containing

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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Sulfur dioxide reacts with oxygen to form sulfur trioxide. This reaction is
carried out isothermally at 250°C and at P = 5 atm in a plug flow reactor.
Oxygen is used in excess, with a mole flow rate twice the stoichiometric flow
rate. The reaction mixture behaves like an ideal gas. If a feed gas containing
80% mol SO₂ and 20 mol% inert enters the reactor together with the excess
O2, calculate the exit concentrations (mol/L) of SO2, O2, SO3 and inert if it is
desired to achieve 95% conversion of SO2.
Transcribed Image Text:Sulfur dioxide reacts with oxygen to form sulfur trioxide. This reaction is carried out isothermally at 250°C and at P = 5 atm in a plug flow reactor. Oxygen is used in excess, with a mole flow rate twice the stoichiometric flow rate. The reaction mixture behaves like an ideal gas. If a feed gas containing 80% mol SO₂ and 20 mol% inert enters the reactor together with the excess O2, calculate the exit concentrations (mol/L) of SO2, O2, SO3 and inert if it is desired to achieve 95% conversion of SO2.
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