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Before solving, complete Degrees of Freedom analysis. Thank you! (Last person did not look correct as there is no volume given. If you do end

Before solving, complete Degrees of Freedom analysis. Thank you! (Last person did not look correct as there is no volume given. If you do end up using P=nRT/V let me know how!

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.33 Acetaldehyde (CH3CHO) is produced by dehydrogenation of ethanol (C2H5OH). C2H5OHCH3CHO+H2 An undesired side reaction produces ethyl acetate (CH3COOC2H5) 2C2H5OHCH3COOC2H5+2H2 120gmol ethanol/h is fed to a reactor operating at steady state. The reactor operates at 400C and 2atm pressure. If the reactor outlet is at equilibrium, what is the fractional conversion of ethanol, and fractional selectivity for producing acetaldehyde from ethanol? How could you adjust temperature and pressure to increase conversion? To increase selectivity? Is it possible to adjust temperature and pressure to increase both conversion and selectivity? .33 Acetaldehyde (CH3CHO) is produced by dehydrogenation of ethanol (C2H5OH). C2H5OHCH3CHO+H2 An undesired side reaction produces ethyl acetate (CH3COOC2H5) 2C2H5OHCH3COOC2H5+2H2 120gmol ethanol/h is fed to a reactor operating at steady state. The reactor operates at 400C and 2atm pressure. If the reactor outlet is at equilibrium, what is the fractional conversion of ethanol, and fractional selectivity for producing acetaldehyde from ethanol? How could you adjust temperature and pressure to increase conversion? To increase selectivity? Is it possible to adjust temperature and pressure to increase both conversion and selectivity

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