Seawater containing 3.50 wt% salt passes through a series of 8 evaporators. Roughly equal quantities of water are vaporized in each of the 8 units and then condensed and combined to obtain a product stream of fresh water. The brine leaving each evaporator but the 8th is fed to the next evaporator. The brine leaving the 8th evaporator contains 5.00 wt% salt. It is desired to produce 1.5 x 104 L/h of fresh water.

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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How much seawater must be fed to the process?
i 29600
kg/h
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What is the mass flow rate of concentrated brine out of the process?
i
kg/h
Transcribed Image Text:How much seawater must be fed to the process? i 29600 kg/h eTextbook and Media Hint Save for Later Outlet Brine What is the mass flow rate of concentrated brine out of the process? i kg/h
Seawater containing 3.50 wt% salt passes through a series of 8 evaporators.
Roughly equal quantities of water are vaporized in each of the 8 units and then condensed and combined to obtain a product stream of
fresh water.
The brine leaving each evaporator but the 8th is fed to the next evaporator.
The brine leaving the 8th evaporator contains 5.00 wt% salt.
It is desired to produce 1.5 x 104 L/h of fresh water.
Transcribed Image Text:Seawater containing 3.50 wt% salt passes through a series of 8 evaporators. Roughly equal quantities of water are vaporized in each of the 8 units and then condensed and combined to obtain a product stream of fresh water. The brine leaving each evaporator but the 8th is fed to the next evaporator. The brine leaving the 8th evaporator contains 5.00 wt% salt. It is desired to produce 1.5 x 104 L/h of fresh water.
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