Elementary Principles of Chemical Processes, Binder Ready Version
Elementary Principles of Chemical Processes, Binder Ready Version
4th Edition
ISBN: 9781118431221
Author: Richard M. Felder, Ronald W. Rousseau, Lisa G. Bullard
Publisher: WILEY
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Chapter 10, Problem 10.7P
Interpretation Introduction

(a)

Interpretation:

Derive the given differential equation for the gas volume.

Concept introduction:

The general mole balance equation is defined as,

Accumulation=input+generation-output-consumption

Interpretation Introduction

(b)

Interpretation:

Calculate the stored gas volume using Simpson’s rule and evaluate the integral.

Concept introduction:

The general mole balance equation is defined as,

Accumulation=input+generation-output-consumption

Interpretation Introduction

(c)

Interpretation:

Use another method to calculate the value in part (b).

Concept introduction:

The general mole balance equation is defined as,

Accumulation=input+generation-output-consumption

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A distillation column with 100 kmol/h feed of 50% A and 50% B produces a distillate product with xD = 0.95 and a bottom stream with xbot = 0.04 of the more volatile species A. CMO is valid and the equilibrium data is given by y = 2.4x/1 + 1.4x a) If the feed is saturated liquid, determine the minimum reflux ratio  b) If the feed is saturated vapor, determine the minimum reflux ratio
A distillation column with 100 kmol/h feed of 60% A and 40% B produces a distillate product with xD = 0.98 and a bottom stream with xbot = 0.02 of the more volatile species A. CMO is valid and the equilibrium data is given by y = 2.2x/1+1.2x  a) If the reflux ratio R is 2, determine (numerically) the composition (y) of the vapor stream entering the top equilibrium plate.__________b) If R = 2 and q = 0.6, determine the liquid flow rate in the stripping section of the column__________c) If q = 0, the minimum reflux ratio is
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