Situation: . The available information for an absorption tower is as follows (flow rates are at the bottom): • Liquid fl

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Situation: . The available information for an absorption tower is as follows (flow rates are at the bottom): • Liquid fl

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Situation The Available Information For An Absorption Tower Is As Follows Flow Rates Are At The Bottom Liquid Fl 1
Situation The Available Information For An Absorption Tower Is As Follows Flow Rates Are At The Bottom Liquid Fl 1 (38 KiB) Viewed 15 times
Situation The Available Information For An Absorption Tower Is As Follows Flow Rates Are At The Bottom Liquid Fl 2
Situation The Available Information For An Absorption Tower Is As Follows Flow Rates Are At The Bottom Liquid Fl 2 (87.17 KiB) Viewed 15 times
Situation: . The available information for an absorption tower is as follows (flow rates are at the bottom): • Liquid flow rate = 8660 [kg/h]; density = 1000 [kg/m3]; viscosity = 1 [mPa:s] • Gas flow rate = 3000 [kg/h]: density = 1.2 [kg/m3] Allowable pressure drop per meter of packing height = 200 [Pa/m] Packing properties (plastic NORPAC 35 mm): Fp = 21 [ft-1); a = 141.8 [m-'); e = 0,944; Ch = 0.587; Cp = 0.371 Requirements: Please, determine the following (some questions refer to Fig. 4.5 of the textbook): 1. The value of the abscissa (X) in Fig 4-5 is: (4 points) 2. The value of the ordinate (Y) in Fig 4.5 is: (4 points) 3. The value of Cs, in, is: [m/s]. (5 points) 4. The column diameter is: [m]. (5 points) You may use the figure in your book (Y vs. X) or the image below:
EY = F,(C)()01 Parameter of curves is pressure drop, Pa/m of packed height. Flooding 1000 800 0.1 400 - 200 100 0.01 0.001 0.01 0.1 10
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