For each of the following systems indicate the number of phases present, phase fractions or amount (if applicable) of the phases and the composition of each phase. You should also provide additional information on any correlations (you are likely to use some combination of Raoult's Law, Antoine's Eq., Wilsons Model and/or DePreister charts/data). If an equation of state, cubic or more specific models are employed relevant data should also be provided. Note: You may treat each system as ideal and apply a Raoult's Law approach. a) 100 kgmoles of 30% Heptane - 70% Ethylbenzene: @ 1.0 atmosphere, 125°C b) 30% Methyl Acetate - 70% Methanol: @ 1.0 atmosphere, 56.8°C

Introduction to Chemical Engineering Thermodynamics
8th Edition
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Chapter1: Introduction
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1) Vapor-Liquid Equilibrium: Flash Separations (CHEN 3110 Thermodynamics)
For each of the following systems indicate the number of phases present, phase fractions or amount (if
applicable) of the phases and the composition of each phase.
You should also provide additional information on any correlations (you are likely to use some combination
of Raoult's Law, Antoine's Eq., Wilsons Model and/or DePreister charts/data). If an equation of state,
cubic or more specific models are employed relevant data should also be provided. Note: You may treat
each system as ideal and apply a Raoult's Law approach.
a) 100 kgmoles of 30% Heptane - 70% Ethylbenzene: @ 1.0 atmosphere, 125°C
b) 30% Methyl Acetate - 70% Methanol: @ 1.0 atmosphere, 56.8°C
Transcribed Image Text:1) Vapor-Liquid Equilibrium: Flash Separations (CHEN 3110 Thermodynamics) For each of the following systems indicate the number of phases present, phase fractions or amount (if applicable) of the phases and the composition of each phase. You should also provide additional information on any correlations (you are likely to use some combination of Raoult's Law, Antoine's Eq., Wilsons Model and/or DePreister charts/data). If an equation of state, cubic or more specific models are employed relevant data should also be provided. Note: You may treat each system as ideal and apply a Raoult's Law approach. a) 100 kgmoles of 30% Heptane - 70% Ethylbenzene: @ 1.0 atmosphere, 125°C b) 30% Methyl Acetate - 70% Methanol: @ 1.0 atmosphere, 56.8°C
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