Question

(30.00 Points) 1- X 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 -1/r<sub>A</sub> 189 192 200 222 250 303 400 556 800 1000 (dm³*s/mol) A gas mixture consists of 40%A and 60% Inert gas at 10 atm. The gas mixture enters the reactor with a flow rate of 10 dm³/s at 200°C. Using the data above calculate reactor volumes necessary to reach X=0.8 using 2 CSTR reactors in series. The conversion from the first reactor is 0.5. You can assume gas mixture as ideal gas. Your result should include only FAo and 2 reactor volumes with units such as FAO= V1=...... V2=...... (R=0.082 dm³.atm/(mol*K))

          (30.00 Points)
1-
X
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
-1/r<sub>A</sub>
189
192
200
222
250
303
400
556
800
1000
(dm³*s/mol)
A gas mixture consists of 40%A and 60% Inert gas at 10 atm. The gas mixture enters the reactor with a
flow rate of 10 dm³/s at 200°C. Using the data above calculate reactor volumes necessary to reach X=0.8
using 2 CSTR reactors in series. The conversion from the first reactor is 0.5. You can assume gas mixture
as ideal gas. Your result should include only FAo and 2 reactor volumes with units such as FAO=
V1=...... V2=...... (R=0.082 dm³.atm/(mol*K))
        
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(30.00 Points)
1-
X
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
-1/r<sub>A</sub>
189
192
200
222
250
303
400
556
800
1000
(dm³*s/mol)
A gas mixture consists of 40%A and 60% Inert gas at 10 atm. The gas mixture enters the reactor with a
flow rate of 10 dm³/s at 200°C. Using the data above calculate reactor volumes necessary to reach X=0.8
using 2 CSTR reactors in series. The conversion from the first reactor is 0.5. You can assume gas mixture
as ideal gas. Your result should include only FAo and 2 reactor volumes with units such as FAO=
V1=...... V2=...... (R=0.082 dm³.atm/(mol*K))

Added by Cesar F.

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Chemistry: Structure and Properties
Chemistry: Structure and Properties
Nivaldo Tro 2nd Edition
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X 0.0 -1/𝑟𝐴 189 (dm*s/mol) 0.1 192 0.2 200 0.3 222 0.4 250 0.5 303 0.6 400 0.7 556 0.8 800 0.9 1000 A gas mixture consists of 40% A and 60% Inert gas at 10 atm. The gas mixture enters the reactor with a flow rate of 10 dm/s at 200°C. Using the data above, calculate reactor volumes necessary to reach X=0.8 using 2 CSTR reactors in series. The conversion from the first reactor is 0.5. You can assume the gas mixture as an ideal gas. Your result should include only 𝐹𝐴𝑜 and 2 reactor volumes with units such as 𝐹𝐴𝑜 𝑉1=.. 𝑉2=.. (𝑅=0.082 𝑑𝑚𝑎𝑡𝑚𝑜𝑙*𝐾/𝑚𝑜𝑙*𝐾)
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Transcript

-
00:01 We have given the reaction a will give you p plus c.
00:06 We have given the volume that is equals to 200 decimeter cube which is equals to 200 liter.
00:17 The second point is the pressure that is equals to 20 atm.
00:25 Temperature is equals to 227 degree celsius which is equals to 500 kelvin.
00:39 Now assuming ideal gas law total number of moles will be n.
00:58 So that will be equals to pv divided by rt...
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