WOLFRAM NOTEBOOK

WOLFRAM|DEMONSTRATIONS PROJECT

Analysis of an Extractive Distillation Column with Three Design Variables

entrainer feed flow rate
1100
reflux ratio
3
entrainer feed temperature
320
composition profile
Consider an extractive distillation column operating at atmospheric pressure with 55 stages, a partial reboiler, and a total condenser. It is used to separate an acetone/methanol azeotrope using water as an entrainer.
Pure entrainer is fed to the column at stage 24. (We count the stages from the top.) The lower feed is composed of an equimolar mixture of acetone and methanol and is fed to the column at stage 39. The lower feed flow rate is set to
540kmol/hr
.
This Demonstration solves the MESH equations (material, equilibria, summations, and heat) for the distillation column, and displays the composition and temperature profiles for user-set values of the reflux ratio, the entrainer feed temperature, and the entrainer feed flow rate. The distillate flow rate is set equal to
270.7kmol/hr
.
The Demonstration gives the composition and temperature profiles in the three sections of the extractive distillation column, which are the rectifying, extractive, and stripping sections (shown by the green, red, and blue panes, respectively). The acetone, methanol, and water compositions are indicated in orange, green, and brown, respectively. The calculation shows excellent agreement with results obtained with Aspen HYSYS, a commercial simulation package.
The performance of the column is displayed using contour plots of constant acetone purity in the distillate stream in the plane of two of the three process variables: the reflux ratio, the entrainer feed temperature, and the entrainer feed flow rate.
One important result (seen in the first contour plot tab) is that there is an optimum finite value of the reflux ratio at a given entrainer feed temperature. That is, the separation is not improved by simply increasing the reflux ratio. Indeed, separation may even become unfeasible at infinite reflux in some cases.
Wolfram Cloud

You are using a browser not supported by the Wolfram Cloud

Supported browsers include recent versions of Chrome, Edge, Firefox and Safari.


I understand and wish to continue anyway »

You are using a browser not supported by the Wolfram Cloud. Supported browsers include recent versions of Chrome, Edge, Firefox and Safari.