A single-effect evaporator operates at 13 kN/m². What will bc the heating surface necessary to concentrate 1.25 kg/s 2) of 10% caustic soda to 41% assuming a value of U of 1.25 kW/m*K, using steam at 390 K? The heating surface is 1,2 m below the liquid level. Boiling point rise of solution Feed Temperature Specific heat of feed Specific heat of the product Specific gravity of boiling product : 30 K : 291 K :4.0 kJ/kgK : 3.26 kJ/kgK : 1.39

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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A single-effect evaporator operates at 13 kN/m². What will bc the heating surface necessary to concentrate 1.25 kg/s
2)
of 10% caustic soda to 41% assuming a value of U of 1.25 kW/m*K, using steam at 390 K? The heating surface is 1,2 m
below the liquid level.
Boiling point rise of solution
Feed Temperature
Specific heat of feed
Specific heat of the product
Specific gravity of boiling product
: 30 K
: 291 K
:4.0 kJ/kgK
: 3.26 kJ/kgK
: 1.39
Transcribed Image Text:A single-effect evaporator operates at 13 kN/m². What will bc the heating surface necessary to concentrate 1.25 kg/s 2) of 10% caustic soda to 41% assuming a value of U of 1.25 kW/m*K, using steam at 390 K? The heating surface is 1,2 m below the liquid level. Boiling point rise of solution Feed Temperature Specific heat of feed Specific heat of the product Specific gravity of boiling product : 30 K : 291 K :4.0 kJ/kgK : 3.26 kJ/kgK : 1.39
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