Engineering
Engineering, 20.03.2021 05:20, gobbler80

You are to separate an O2/CO2 stream using a membrane process. The membrane to be used is silicone rubber with a thickness of 2.00x103cm. Permeabilities are given in Table 13.3-2 (4th edition) [this table is also available on Slack and Canvas]. The feed to be processed has a flowrate of 1.5x 106 cm3(STP)/s and is 80 mol% CO2. a) You would like to remove a concentrated permeate stream that is at least 95% CO2, in order to capture and store this CO2 rather than releasing it into the atmosphere. If the high pressure side is at 100 cmHg, the low pressure side at 20 cmHg, can 20% of the feed volume be removed as the permeate and meet the desired vapor phase composition? What area of membrane is needed to complete this separation?
b) What is the maximum percentage of the feed that can be pushed through the membrane as permeate product such that it has a composition (mole fraction) greater than 90% CO2?
c) A two stage separation is used, in which the permeate of stage 1 is repressurized to 100 cmHg and sent to a second stage. Both stages operate with a permeate pressure of 20 cmHg. If the cut of the first stage is 0.70, what is the maximum percentage of the initial feed stream that you can attain in the permeate of the second stage and still meet the 95% CO2 minimum mole fraction? What is the retentate CO2 mole fraction of this second stage? Is the retentate CO2 mole fraction of stage 2 higher or lower than the initial feed

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You are to separate an O2/CO2 stream using a membrane process. The membrane to be used is silicone r...

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