In the differential distillation column, a binary mixture of acetic acid and water is used, Whe:Q2 The amount of the liq

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In the differential distillation column, a binary mixture of acetic acid and water is used, Whe:Q2 The amount of the liq

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In The Differential Distillation Column A Binary Mixture Of Acetic Acid And Water Is Used Whe Q2 The Amount Of The Liq 1
In The Differential Distillation Column A Binary Mixture Of Acetic Acid And Water Is Used Whe Q2 The Amount Of The Liq 1 (20.28 KiB) Viewed 25 times
In The Differential Distillation Column A Binary Mixture Of Acetic Acid And Water Is Used Whe Q2 The Amount Of The Liq 2
In The Differential Distillation Column A Binary Mixture Of Acetic Acid And Water Is Used Whe Q2 The Amount Of The Liq 2 (27.75 KiB) Viewed 25 times
In the differential distillation column, a binary mixture of acetic acid and water is used, Whe:Q2 The amount of the liquid in the container at the start of the distillation process- 100 kg Initial acetic acid concentration-60% Final acetic acid concentration-80% The equilibrium relationship for the binary mixture of acetic acid and water is yi- mi xi-Ci, mi-0.5, Ci-02 Calculate the amount of the liquid in the container at the end of the distillation process (1 11-25 Ag LI-SE O LI-56-25 90

Example: Differential distillation Binary mixture of acetic acid and water, Where: The amount of the liquid in the container at the start of the distillation process- 100 kg Initial acetic acid concentration=60% Final acetic acid concentration 80% The equilibrium relationship for the binary mixture of acetic acid and water is y = 0.5 x₁ Calculate the amount of liquid in the container at the end of the distillation process?. Solution 1 By applying equation (5), we can obtain the L1. N-1 4-11 Li Xi1 X lo L1/100 = (0.8/0.6)^(1/(0.5-1) L1=56.25 Kg Lo
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