Q3-A stream of humid air enters a condenser in which 95% of the water vapor in the air is condensed The flow rate of the condensate (the liquid leaving the condenser) is measured and found to be 225 L/h. Dry air may be taken to contain 21 mole% oxygen, with the balance nitrogen. Calculate the flow rate of the gas stream leaving the condenser and the mole fractions of oxygen, nitrogen, and water in this stream.

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Chapter8: Gases
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Problem 155CP: Methane (CH4) gas flows into a combustion chamber at a rate of 200. L/min at 1.50 atm and ambient...
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Q3-A stream of humid air enters a condenser in which 95% of the water vapor in the air is condensed
The flow rate of the condensate (the liquid leaving the condenser) is measured and found to be
225 L/h. Dry air may be taken to contain 21 mole% oxygen, with the balance nitrogen. Calculate
the flow rate of the gas stream leaving the condenser and the mole fractions of oxygen, nitrogen,
and water in this stream.
(mol dry air/h)
0.21 mol 02/mol
0.79 mol N/mol
nglmol H,0/h)
na(mol 02/h)
ig(mol N/h)
ng(mol H20 (v)/h)
225 liters H20 (1)/h
nz(mol H20 (1)/h)
(95% of water in feed)
Transcribed Image Text:Q3-A stream of humid air enters a condenser in which 95% of the water vapor in the air is condensed The flow rate of the condensate (the liquid leaving the condenser) is measured and found to be 225 L/h. Dry air may be taken to contain 21 mole% oxygen, with the balance nitrogen. Calculate the flow rate of the gas stream leaving the condenser and the mole fractions of oxygen, nitrogen, and water in this stream. (mol dry air/h) 0.21 mol 02/mol 0.79 mol N/mol nglmol H,0/h) na(mol 02/h) ig(mol N/h) ng(mol H20 (v)/h) 225 liters H20 (1)/h nz(mol H20 (1)/h) (95% of water in feed)
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