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A chemical separation plant utilizes an absorber and stripper.Target Recovery:Ninety percent ( 9 0 % ) of Hydrocarbon X must be removed from the incoming

A chemical separation plant utilizes an absorber and stripper.Target Recovery:Ninety percent (90%) of Hydrocarbon X must be removed from the incoming gas stream. This gas stream initially contains a specific concentration of Hydrocarbon X (0.06 moles per mole of X-free gas).Feed Streams:Gas Stream: The gas stream entering the absorber contains the Hydrocarbon X we want to capture. The concentration is quantified as a ratio of moles of Hydrocarbon X to moles of all other components in the gas (excluding Hydrocarbon X). This ratio is 0.06.Oil Stream: The oil enters the top of the absorber. This oil initially has a low concentration of Hydrocarbon X (0.01 moles per mole of pure oil).Product (Benzene-rich Oil): The exiting liquid stream from the absorber has a higher concentration of Hydrocarbon X =0.19 moles per mole of pure oil.Vapors are condensed, separated, and removed.Conditions:The entire process operates at a constant temperature (25\deg C or 77\deg F).For the stripping stage, a high-temperature steam (benzene-free) is used to remove the Hydrocarbon X from the rich oil. The stripping stage operates at a higher temperature (110\deg C).The ratio of the flow rate of the pure oil entering the absorber to the flow rate of the benzene-free steam is 2.0.Molecular weight (MW) of the oil: 200Molecular weight of Hydrocarbon X: 78Molecular weight of the non-Hydrocarbon X gas components: 32Determine the number of theoretical stages.

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