1996
DOI: 10.1016/0378-3812(96)03043-9
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Vapor-liquid equilibria for methyl tert-butyl ether + methanol and tert-amyl methyl ether + methanol

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Cited by 48 publications
(19 citation statements)
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“…Thermodynamic and physicochemical properties of binary liquid mixtures of ethers with alcohols have been studied by Farkova et al [9] (methanol + butyl methyl ether, or +tert butyl methyl ether, or +ethyl propyl ether, or +diisopropyl ether, or +bu-tyl ethyl ether), Toghiani et al [10] (methanol + methyl tert-butyl ether, or +tert-amyl methyl ether), Coto et al [11] (methanol + methyl tert-butyl ether, or +tert-amyl methyl ether), Canosa et al [12] (diethyl ether + methanol, or +ethanol), Kammerer et al [13] (ethanol + ethyl tert-butyl ether), Rezanova et al [14] (diisopropyl ether, or dibutyl ether + methanol, or +ethanol, or +2-propanol, or +1-butanol, or +2-butanol), Gonzalez et al [15] (methyl tert-butyl ether, or tert-amyl methyl ether, or ethyl tertbutyl ether + methanol, or +ethanol, or +1-propanol, or +2-propanol or +1-butanol), Rezanova et al [16] (tert-amyl methyl ether + ethanol, or +1-propanol, or +2-propanol, or +1-butanol, or +2-butanol, or +1-octanol), Rezanova and Lichtenthaler [17] (butyl-vinyl ether, or iso-butyl-vinyl ether + ethanol, or +1-butanol, or +iso-butanol), Segade et al [18] (methyl tert-butyl ether + 1-propanol), Piñeiro [19] (diisopropyl ether + alcohol from methanol to 1-undecanol), Aznarez et al [20] (tetraethylene glycol dimethyl ether + 2-propanol, or +2-butanol, or +2-pentanol), and Gómez-Marigliano et al [21] (methyl tert-butyl ether, or tert-amyl methyl ether, or diisopropyl ether + 1-propanol).…”
Section: Introductionmentioning
confidence: 99%
“…Thermodynamic and physicochemical properties of binary liquid mixtures of ethers with alcohols have been studied by Farkova et al [9] (methanol + butyl methyl ether, or +tert butyl methyl ether, or +ethyl propyl ether, or +diisopropyl ether, or +bu-tyl ethyl ether), Toghiani et al [10] (methanol + methyl tert-butyl ether, or +tert-amyl methyl ether), Coto et al [11] (methanol + methyl tert-butyl ether, or +tert-amyl methyl ether), Canosa et al [12] (diethyl ether + methanol, or +ethanol), Kammerer et al [13] (ethanol + ethyl tert-butyl ether), Rezanova et al [14] (diisopropyl ether, or dibutyl ether + methanol, or +ethanol, or +2-propanol, or +1-butanol, or +2-butanol), Gonzalez et al [15] (methyl tert-butyl ether, or tert-amyl methyl ether, or ethyl tertbutyl ether + methanol, or +ethanol, or +1-propanol, or +2-propanol or +1-butanol), Rezanova et al [16] (tert-amyl methyl ether + ethanol, or +1-propanol, or +2-propanol, or +1-butanol, or +2-butanol, or +1-octanol), Rezanova and Lichtenthaler [17] (butyl-vinyl ether, or iso-butyl-vinyl ether + ethanol, or +1-butanol, or +iso-butanol), Segade et al [18] (methyl tert-butyl ether + 1-propanol), Piñeiro [19] (diisopropyl ether + alcohol from methanol to 1-undecanol), Aznarez et al [20] (tetraethylene glycol dimethyl ether + 2-propanol, or +2-butanol, or +2-pentanol), and Gómez-Marigliano et al [21] (methyl tert-butyl ether, or tert-amyl methyl ether, or diisopropyl ether + 1-propanol).…”
Section: Introductionmentioning
confidence: 99%
“…For the ternary system, the results of the correlation are given in table 6. In table 7, we have compared Methanol (3) MTBE ( (25,26) which have been reduced using a three-parameter Margules equation. We have also calculated the values of the excess molar entropy S E m for the ternary system using literature data for the excess molar enthalpy H E m at the same temperature of 313.15 K. (27) The resulting values are given in table 8.…”
Section: Results and Correlationsmentioning
confidence: 99%
“…The (26) namely: x 1 azeotrope = 0.7358 and p azeotrope = 66.310 kPa, and x 1 azeotrope = 0.74604, and p azeotrope = 45.434 kPa for {x 1 CH 3 OH + (1 − x 1 )CH 3 (CH 2 ) 5 CH 3 }.…”
Section: Discussionmentioning
confidence: 99%
“…The pure and cross second virial coefficients B were estimated by the method of Hayden and OÕConnell [19]. An optimum set of the binary energy parameters a ji was obtained using equations (4) and (5) by the method of maximum likelihood principle [17], where the standard deviations in the experimental values were taken as 0.133 kPa in pressure, 0.05 K in temperature, 0.001 in liquid-phase mole fraction and 0.003 in vapour-phase mole fraction. The binary energy parameters for the partially miscible mixtures were obtained from the mutual solubility data by solving equations (6) and (7).…”
Section: Prediction Of Quaternary (Liquid + Liquid) Equilibria Using mentioning
confidence: 99%
“…The experimental results are predicted by using an associated-solution model [1] having binary parameters obtained from binary phase equilibria and are reproduced by modified and extended forms of the UNIQUAC models [2,3] including ternary and quaternary parameters obtained from the ternary and quaternary (liquid + liquid) equilibria in addition to binary ones. The binary (vapour + liquid) equilibria, mutual solubility and ternary (liquid + liquid) equilibria relevant to the quaternaries have been available from the literatures: (vapour + liquid) equilibria, (methanol + TAME) [4], (methanol + MTBE) [4], (methanol + toluene) [5], (TAME + MTBE) [6], (TAME + toluene) [7], (MTBE + toluene) [8], 0021 (TMP + toluene) [9], (TAME + TMP) [7] and (MTBE + TMP) [10]; mutual solubilities, (methanol + TMP) [1]; ternary (liquid + liquid) equilibria, (methanol + TA-ME + TMP) [1], (methanol + MTBE + TMP) [1] and (methanol + toluene + TMP) [1].…”
Section: Introductionmentioning
confidence: 99%