TABLE P10-16 Experimental data for the 1-hexene (1) +n- hexane (2) system at 328.15 K. P[kPa] X, y, 64.435 0.000 0.000 65.955 0.102 0.122 67.368 0.200 0.233 68.741 0.300 0.341 70.061 0.400 0.445 71.287 0.500 0.543 72.434 0.600 0.639 73.581 0.700 0.732 74.701 0.799 0.823 75.780 0.900 0.912 76.780 1.000 1.000 Based on data from Kirss H., Kudrya vtseva LS., Eizen 0.G., Eesti NSV Tead.Akad.Toim.Keem Geol., 24(1), 15-23, 1975.
TABLE P10-16 Experimental data for the 1-hexene (1) +n- hexane (2) system at 328.15 K. P[kPa] X, y, 64.435 0.000 0.000 65.955 0.102 0.122 67.368 0.200 0.233 68.741 0.300 0.341 70.061 0.400 0.445 71.287 0.500 0.543 72.434 0.600 0.639 73.581 0.700 0.732 74.701 0.799 0.823 75.780 0.900 0.912 76.780 1.000 1.000 Based on data from Kirss H., Kudrya vtseva LS., Eizen 0.G., Eesti NSV Tead.Akad.Toim.Keem Geol., 24(1), 15-23, 1975.
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
Section: Chapter Questions
Problem 1.1P
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Consider the 1-hexene (1) 1 n-hexane (2) system at 328.15 K. Using Raoult’s Law, predict the system pressure and vapor-phase composition for this mixture and provide a Pxy plot for this mixture. Compare the results of your modeling with the set of experimental data provided for this system in Table P10-16. Plot the data (as points) on the same plot as your model. Is this system properly modeled by Raoult’s Law? Why or why not? |
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