Ethane is chlorinated in continuous reactor: C2H6 + Cl2 → C2H5C1+ HCI Some of the product monochloroethane is further chlorinated in an undesired side reaction: C2H;Cl+ Cl2 → C2H¾C12 + HCl The reactor is designed to yield a 15% conversion of ethane and a selectivity of 14 mole C2H5CI /mole C2H¾Cl,, with a negligible amount of chlorine in the product gas. Calculate a) Feed ratio (mole Cl2/mole CHs b) Fractional yield of monochloroethane. (Basis: Use 100 moles of C2H5CI produced).

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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4. Ethane is chlorinated in continuous reactor: C2H6 + Cl2 → C2H5C\+ HCl
Some of the product monochloroethane is further chlorinated in an undesired side reaction:
C2H;Cl + Cl2
C2H4C12 + HCI
The reactor is designed to yield a 15% conversion of ethane and a selectivity of 14 mole C2H5CI /mole
C2H¼C1,, with a negligible amount of chlorine in the product gas. Calculate a) Feed ratio (mole Cl2/mole
C2H6 b) Fractional yield of monochloroethane. (Basis: Use 100 moles of C2H5CI produced).
Transcribed Image Text:4. Ethane is chlorinated in continuous reactor: C2H6 + Cl2 → C2H5C\+ HCl Some of the product monochloroethane is further chlorinated in an undesired side reaction: C2H;Cl + Cl2 C2H4C12 + HCI The reactor is designed to yield a 15% conversion of ethane and a selectivity of 14 mole C2H5CI /mole C2H¼C1,, with a negligible amount of chlorine in the product gas. Calculate a) Feed ratio (mole Cl2/mole C2H6 b) Fractional yield of monochloroethane. (Basis: Use 100 moles of C2H5CI produced).
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