Liquid-liquid equilibrium for the 1-pentanol + tris(hydroxymethyl)propane + water and 1-hexanol + tris(hydroxymethyl)propane + water systems at 293.15 and 313.15 K

J. Choe, I. W. Kim, Kwang Ho Song

Research output: Contribution to journalArticle

2 Citations (Scopus)

Abstract

The liquid-liquid equilibrium for the 1-pentanol + tris(hydroxymethyl)propane + water and 1-hexanol + tris(hydroxymethyl)propane + water systems were determined at 293.15 and 313.15 K. The NRTL and UNIQUAC models were applied to both ternary systems. The interaction parameters obtained from both models successfully correlated the equilibrium compositions.

Original languageEnglish
Pages (from-to)1568-1570
Number of pages3
JournalJournal of Chemical and Engineering Data
Volume46
Issue number6
DOIs
Publication statusPublished - 2001 Nov 1
Externally publishedYes

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Propane
Water
Liquids
Ternary systems
Chemical analysis
n-pentanol
1-hexanol

ASJC Scopus subject areas

  • Chemistry(all)
  • Chemical Engineering(all)

Cite this

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abstract = "The liquid-liquid equilibrium for the 1-pentanol + tris(hydroxymethyl)propane + water and 1-hexanol + tris(hydroxymethyl)propane + water systems were determined at 293.15 and 313.15 K. The NRTL and UNIQUAC models were applied to both ternary systems. The interaction parameters obtained from both models successfully correlated the equilibrium compositions.",
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AU - Kim, I. W.

AU - Song, Kwang Ho

PY - 2001/11/1

Y1 - 2001/11/1

N2 - The liquid-liquid equilibrium for the 1-pentanol + tris(hydroxymethyl)propane + water and 1-hexanol + tris(hydroxymethyl)propane + water systems were determined at 293.15 and 313.15 K. The NRTL and UNIQUAC models were applied to both ternary systems. The interaction parameters obtained from both models successfully correlated the equilibrium compositions.

AB - The liquid-liquid equilibrium for the 1-pentanol + tris(hydroxymethyl)propane + water and 1-hexanol + tris(hydroxymethyl)propane + water systems were determined at 293.15 and 313.15 K. The NRTL and UNIQUAC models were applied to both ternary systems. The interaction parameters obtained from both models successfully correlated the equilibrium compositions.

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