Question: I need the complete application. I have the solution i mentioned above. I want the step wise complete information. In this we want to remove

I need the complete application. I have the solution i mentioned above.I want the step wise complete information. In this we want toremove acrylonitriles by using water. We want to use the random packing.How can i calculate the packing size for different materials.? How cani calculate the Number of transfer units. ?. Calculate the equilibrium curbeslope ?. I need calculations. I have answers. Show the maccabe thieleI need the complete application. I have the solution i mentioned above. I want the step wise complete information.

In this we want to remove acrylonitriles by using water.

We want to use the random packing.

How can i calculate the packing size for different materials.? How can i calculate the Number of transfer units. ?. Calculate the equilibrium curbe slope ?. I need calculations. I have answers. Show the maccabe thiele calculations. How to draw graph and how to calculate the no. Of transfer units.

Reminder !!!!!!.

I need calculations.

Design this.

Each and everything data is present in these pictures. How to use equations ?.. Thanks...need urgent help.

Basis: 1 hour operation Water entering in the absorber =223607Kg/hr Selection of Packing We have selected ceramic Intalox saddle. Intalox saddle and pall rings are most popular choices. We have selected ceramic intalox saddle because they are most efficient. We have selected the ceramic material of packing because in our system oxygen and water are present and they can cause corrosion and ceramic material will prevent corrosion. Size of the Packing Now we will find the maximum size of intalox saddle which would be used for this particular dia of the column. Packingsize=151D=1511=0.0666m=66mm In an absorption tower mol. fraction of acrylonitrile is X,Y in liquid gas respectively. Then by acrylonitrile mass balance we have: Gm(YY2)=Lm(XX2)3138.87(Y.001)=11944.35(X0)Y=3.805X+.001(1)X=.26Y.00026X=.26(Y.001)(2) The equation no. 1 and 2 represents the operating line of absorption of acrylonitrile. Grm 3617.08Kgmolur mol. fraction of acrylonitrile =.001 The equation no. I and 2 represents the operating line of absorption of icrylonitrile. Gm3617.08Kemollux equilibrium curve for the system will b straight line with a slop of 1.7.hence the equation of equilibrium curve for the acrylonitrile water system is Y=1.7X(3) Now we assumed different values of Y and calculated their corresponding value of X&Y using equation ( 2 and 3 ) the graph is shown below: Number of transfer unit after drawing graph between XVsY and X Vs Y we get using Mecab Theile method: NOG=10

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