Liquid−Liquid Extraction of Oxalic Acid from Aqueous Solutions with Tributyl Phosphate and a Mixed Solvent at 303.15 K

The phase diagram of the water + oxalic acid + tributyl phosphate ternary system was obtained at 303.15 K. Experiments were also conducted on the equilibrium distribution of oxalic acid between aqueous solutions and tributyl phosphate (TBP) + hexane (H) mixed solvent (with a 60/40 TBP/H percent volu...

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Bibliographic Details
Published inJournal of chemical and engineering data Vol. 44; no. 3; pp. 430 - 434
Main Authors Barnes, Norma G, Gramajo de Doz, Mónica B, Sólimo, Horacio N
Format Journal Article
LanguageEnglish
Published Washington, DC American Chemical Society 01.05.1999
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Summary:The phase diagram of the water + oxalic acid + tributyl phosphate ternary system was obtained at 303.15 K. Experiments were also conducted on the equilibrium distribution of oxalic acid between aqueous solutions and tributyl phosphate (TBP) + hexane (H) mixed solvent (with a 60/40 TBP/H percent volume ratio). Analysis of the results shows that the presence of a diluent (H) generally increases the selectivity when compared with pure TBP. This fact improves the extraction of oxalic acid from its aqueous solutions, but similar average distribution coefficients are obtained when the mixed solvent is used instead of pure TBP. A multistage cross-flow extraction process was performed in order to verify the accuracy of the basic equilibrium data and to obtain the number of stages required to extract oxalic acid from its aqueous solutions. This number was also graphically determined by using a distribution diagram in Bancroft's coordinates and analytically calculated by assuming virtual immiscibility between the feed and the extraction solvents.
Bibliography:The material of this paper is part of a thesis of N.G.B., written in partial fulfillment of the requirements for the Doctoral degree in Chemical Engineering at the Universidad Nacional de Tucumán-Argentina.
istex:6D87A3CD29F4E58487D45118BEE3B3FA79B1C79E
ark:/67375/TPS-02NMVRPT-G
ISSN:0021-9568
1520-5134
DOI:10.1021/je980198r