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For each design, different optimal reflux to minimum reflux ratio is assumed.
The second one is to find the minimum reflux ratio and a preliminary design of the column.
The optimum reflux ratio was significantly higher than 1.2 times the minimum reflux ratio suggested by traditional heuristics.
The optimum reflux ratio predicted by the capacity variables is around 1.5 times the minimum reflux ratio, which is close to the accepted heuristic rule of 1.03 1.3 times the minimum reflux ratio.
For the examples studied we show that the minimum reflux ratio in a kinetically controlled distillation is equal to that for an equilibrium reaction.
If the problem has a solution, the minimum reflux ratio and the compositions in the column are obtained simultaneously by quasilinearization iteration.
Similar(43)
These new equations are used to develop a general method of calculating minimum reflux ratios for reactive distillation columns.
Based onthese equations, a general method of calculating minimum reflux ratios for reactive distillation columns is presented.
The design equations are based on the Underwood equations for the calculation of minimum reflux (reboil) ratio, the analytical formulations of the distillation line, the Eigenfunction and the number of theoretical stages for each mass transfer section of the column.
Starting from a short-cut distillation design calculation using the DSTWU method which is based on the well-known Fenske-Underwood-Gilliland correlations, the minimum and actual reflux ratios, minimum and actual number of stages, optimum feed location and condenser and reboiler duties were estimated.
A new rigorous method for the determination of the minimum reflux and reboil ratios for nonideal homogeneous distillation is outlined.
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minimum expression ratio
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