2003Journal of Chemical & Engineering DataRequires access

High-Pressure Vapor−Liquid Equilibria for CO2 + 2-Butanol, CO2 + Isobutanol, and CO2 + tert-Butanol Systems

Huey-Ing Chen, Po-Hung Chen, Hung-Yi Chang

Open publisher page 17 citations

Abstract

In this study, the vapor−liquid equilibrium data of CO 2 + isobutanol, CO 2 + 2-butanol, and CO 2 + tert -butanol systems were measured with an improved static-type phase equilibrium apparatus at temperatures of (331.9, 341.6, and 351.3) K and pressures from (50 to 120) bar. To ensure the accuracy and reliability of these measurements, the experimental data were compared with literature values, and these were found to be in quite good agreement. The mutual solubilities of CO 2 + isomeric butanol systems decreased in the following order: CO 2 + tert -butanol, CO 2 + 2-butanol, and CO 2 + isobutanol. The temperature and pressure effects on mutual solubilities between CO 2 and isomeric butanols were also demonstrated and discussed.

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What this paper is about

In this study, the vapor−liquid equilibrium data of CO 2 + isobutanol, CO 2 + 2-butanol, and CO 2 + tert -butanol systems were measured with an improved static-type phase equilibrium apparatus at temperatures of (331.9, 341.6, and 351.3) K and pressures from (50 to 120) bar. To ensure the accuracy and reliability of these measurements, the experimental data were compared with literature values, and these were found to be in quite good agreement. The mutual solubilities of CO 2 + isomeric butanol systems decreased in the following order: CO 2 + tert -butanol, CO 2 + 2-butanol, and CO 2 + isobutanol. The temperature and pressure effects on mutual solubilities between CO 2 and isomeric butanols were also demonstrated and discussed.

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Available abstract

In this study, the vapor−liquid equilibrium data of CO 2 + isobutanol, CO 2 + 2-butanol, and CO 2 + tert -butanol systems were measured with an improved static-type phase equilibrium apparatus at temperatures of (331.9, 341.6, and 351.3) K and pressures from (50 to 120) bar. To ensure the accuracy and reliability of these measurements, the experimental data were compared with literature values, and these were found to be in quite good agreement. The mutual solubilities of CO 2 + isomeric butanol systems decreased in the following order: CO 2 + tert -butanol, CO 2 + 2-butanol, and CO 2 + isobutanol. The temperature and pressure effects on mutual solubilities between CO 2 and isomeric butanols were also demonstrated and discussed.

Key concepts: Isobutanol, Butanol, 2-Butanol, Chemistry, n-Butanol, Thermodynamics, Bar (unit), Analytical Chemistry (journal)

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High-Pressure Vapor−Liquid Equilibria for CO2 + 2-Butanol, CO2 + Isobutanol, and CO2 + tert-Butanol Systems — Research Paper | ScholarLens