Question

8- The mass flow rate of the first gaseous feed stream, containing the component I only...

8- The mass flow rate of the first gaseous feed stream, containing the component I only , is 6,000 g\s .The total volumetric flow rate of the second gaseous feed stream, containing 67w%A and 33 wt%B,is 8,000 liter/s at 15 atm and 300k. These two gaseous feed streams are mixed and combined ,and then the combined gaseous feed stream is fed into a flow reactor at 420 k and 10 atm. All the componets are assumed to be ideal gases. The molecular weights of the component B, The component C ,and the component I are 20 ,40 ,and 75, respectively . An irreversible gaseous reaction has the following stoichiometric chemical reaction formula:

17A- 2B+10c.

Sketch the problem according to the problem description.

Compute the mole fraction of the component A in the combined feed stream to flow reactor in g-mole/s

Compute the mole fraction of the component A in the combined feed stream to flow react.

Calculate the volumetric flow rate of the combined feed stream in liter/s .

Homework Answers

Answer #1

Answers:

a) Sketch the problem according to the problem description.

b) Compute the mole fraction of the component A in the combined feed stream to flow reactor in g-mole/s

You need to know the weight of the molecule of the compound "A" , to answer this question.

c) Compute the mole fraction of the component A in the combined feed stream to flow react.

You need to know the weight of the molecule of the compound "A" , to answer this question.

d) Calculate the volumetric flow rate of the combined feed stream in liter/s

You need to know the weight of the molecule of the compound "A" , to answer this question.

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
Nitrogen (N2) and hydrogen (H2) gases are fed to a reactor in stoichiometric quantities to react...
Nitrogen (N2) and hydrogen (H2) gases are fed to a reactor in stoichiometric quantities to react to form ammonia (NH3). The reactor is operated to achieve a fractional nitrogen conversion of 0.25. The exit stream from the reactor is fed to a separator, which separates unreacted nitrogen and hydrogen from the ammonia. (a) Draw and label a PFD for the process described above. [10%] (b) Write down a balanced stoichiometric equation for the reaction. [5%] (c) If the feed is...
Ammonia is produced by reacting nitrogen and hydrogen. A feed stream consisting of 2.400% argon (by...
Ammonia is produced by reacting nitrogen and hydrogen. A feed stream consisting of 2.400% argon (by mole) and stoichiometric proportion of the reactants (N2 and H2) is fed into the system at the rate of 100 mol/min. The components enter a reactor, and then all ammonia is separated from the other components and leaves the process. The other components are recycled back to the feed stream, with a portion being purged from the system. The mole percentage of argon in...
Acetaldehyde is synthesized by the catalytic dehydrogenization of ethanol: C2H5OH ? CH3CHO + H2 Fresh feed...
Acetaldehyde is synthesized by the catalytic dehydrogenization of ethanol: C2H5OH ? CH3CHO + H2 Fresh feed (pure ethanol) is blended with a recycle stream (95 mole% ethanol and 5% acetaldehyde), and the combined stream is heated and vaporized, entering the reactor at 280?C. Gases leaving the reactor are cooled to -40?C to condense the acetaldehyde and un-reacted ethanol. Off-gas from the condenser is sent to a scrubber, where the uncondensed organic compounds are removed and hydrogen is recovered as a...
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT