Example 4.12. The following Rxns.: C₂H C₂H₂ + H₂ 2CH₂ (4.16) (4.17) C₂H + H₂ in which Rxn. 4.17 is unwanted, take place in a steady-state continuous reactor. The feed contains 85 mol % C₂He and the balance inerts. The fractional conversion (f) of C₂He is 0.50, and the yield of C₂H₂ is 0.47. Calculate the molar composition of the product and the selectivity of ethylene to

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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Example 4.12. The following Rxns.:
C₂HB - C₂H₂ + H₂
(4.16)
(4.17)
C₂HG + H₂
2CH₂
in which Rxn. 4.17 is unwanted, take place in a steady-state continuous reactor. The feed contains
85 mol % C₂He and the balance inerts. The fractional conversion (f) of C₂He is 0.50, and the yield of
C₂H₂ is 0.47. Calculate the molar composition of the product and the selectivity of ethylene to
Transcribed Image Text:Example 4.12. The following Rxns.: C₂HB - C₂H₂ + H₂ (4.16) (4.17) C₂HG + H₂ 2CH₂ in which Rxn. 4.17 is unwanted, take place in a steady-state continuous reactor. The feed contains 85 mol % C₂He and the balance inerts. The fractional conversion (f) of C₂He is 0.50, and the yield of C₂H₂ is 0.47. Calculate the molar composition of the product and the selectivity of ethylene to
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