One thousand liters of 85.0 wt% glycerol-15.096 water solution is to be diluted tó 65.UA VU from a large storage tank througha 5.0-cm ID pipe at a steady rate. The pipe dischages at a point 5.0 m higher than the liquid surface in the storage tank. The operation is carried out isothermally and takes 11.0 minutes to complete. The friction loss (Fof Equation 7,7-2) is 50.0 g. Calculate the final solution volume and the shaft work in kW that the purmp must deliver, assuming that the surface of the stored solution and the pipe outlet are both at 1.00 atm. Data: Po-100 kg/L:P126 ke/L Vinal W.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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One thousand liters of 85.0 we% glycerol-15.096 water solution is to be diluted to 65.0% glycerol by adding a 30.0% solution pumped
from a large storage tank through a 5.0-cm ID pipe at a steady rate
The pipe dischages at a poirit 5.0 m higher than the liquid surface in the storage tank.
The operation is carried out isothermally and takes 11.0 minutes to complete.
The friction loss (Fof Equation 7.7-2) is 50.0 J/kg.
Calculate the fnal solution volume and the shaft work in kW that the pump must deliver, assuming that the surface of the stored
solution and the pipe outlet are both at 1.00 atm.
Data: Po
-1.00 kg/LP- 1.26 kp/
Vinal
Transcribed Image Text:One thousand liters of 85.0 we% glycerol-15.096 water solution is to be diluted to 65.0% glycerol by adding a 30.0% solution pumped from a large storage tank through a 5.0-cm ID pipe at a steady rate The pipe dischages at a poirit 5.0 m higher than the liquid surface in the storage tank. The operation is carried out isothermally and takes 11.0 minutes to complete. The friction loss (Fof Equation 7.7-2) is 50.0 J/kg. Calculate the fnal solution volume and the shaft work in kW that the pump must deliver, assuming that the surface of the stored solution and the pipe outlet are both at 1.00 atm. Data: Po -1.00 kg/LP- 1.26 kp/ Vinal
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