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(Liquid + liquid) equilibria and excess enthalpies for (methanol + benzene or propanone + hexane) at the temperature 298.15 K

✍ Scribed by Isamu Nagata


Publisher
Elsevier Science
Year
1994
Tongue
English
Weight
168 KB
Volume
26
Category
Article
ISSN
0021-9614

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✦ Synopsis


The (liquid + liquid) equilibria and excess molar enthalpies of (\left{x_{1} \mathrm{CH}{3} \mathrm{OH}+x{2} \mathrm{C}{6} \mathrm{H}{6}+\right.) (\left.\left(1-x_{1}-x_{2}\right) \mathrm{CH}{3}\left(\mathrm{CH}{2}\right){4} \mathrm{CH}{3}\right}) and (\left{x_{1} \mathrm{CH}{3} \mathrm{OH}+x{2} \mathrm{CH}{3} \mathrm{COCH}{3}+\right.) (\left.\left(1-x_{1}-x_{2}\right) \mathrm{CH}{3}\left(\mathrm{CH}{2}\right){4} \mathrm{CH}{3}\right}) at the temperature (298.15 \mathrm{~K}) have been measured. The experimental values have been compared with those calculated from a volume-fraction association model having binary parameters alone. Polynomial equations also have been used to correlate the ternary excess molar enthalpy results.


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✍ Isamu Nagata πŸ“‚ Article πŸ“… 1994 πŸ› Elsevier Science 🌐 English βš– 108 KB

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The (liquid+liquid) equilibria of ( x1CH3CN+x2c and {x1CH3OH+x2CH3CN+x3c-C6H12+(1-x1-x2-x3)CH3(CH2)5CH3} have been measured at the temperature 298.15 K. The experimental values have been well correlated with extended UNIQUAC and modified Wilson models having binary, ternary, and quaternary paramete