The Experts below are selected from a list of 285 Experts worldwide ranked by ideXlab platform
Scott W. Campbell - One of the best experts on this subject based on the ideXlab platform.
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Total pressure measurements for 1-propanol + 1-pentanol, 1-propanol + 2-pentanol, 2-propanol + 1-pentanol, and 2-propanol + 2-pentanol at 313.15 K
Fluid Phase Equilibria, 1997Co-Authors: Kevin Mara, Venkat R. Bhethanabotla, Scott W. CampbellAbstract:Abstract Total pressure measurements at 313.15 K are reported for 1-propanol + 1-pentanol, 1-propanol + 2-pentanol, 2-propanol + 1-pentanol, and 2-propanol + 2-pentanol. The results were obtained using a Van Ness apparatus and were fitted to the three-suffix Margules equation using Barker's method. The Margules equation represents the data to within an average of 0.01 kPa.
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Total vapor pressure measurements for heptane + 1-pentanol, + 2-pentanol, + 3-pentanol, + 2-methyl-1-butanol, + 2-methyl-2-butanol, + 3-methyl-1-butanol, and + 3-methyl-2-butanol at 313.15 K
Journal of Chemical & Engineering Data, 1997Co-Authors: Jonathon M. Rhodes, Venkat R. Bhethanabotla, Scott W. CampbellAbstract:Total vapor pressure measurements at 313.15 K are reported for binary systems of heptane with each of seven pentanol isomers: 1-pentanol, 2-pentanol, 3-pentanol, 2-methyl-1-butanol, 2-methyl-2-but...
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Binary total pressure measurements for methanol with 1-pentanol, 2-pentanol, 3-pentanol, 2-methyl-1-butanol, 2-methyl-2-butanol, 3-methyl-1-butanol, and 3-methyl-2-butanol at 313.15 K
Journal of Chemical & Engineering Data, 1996Co-Authors: Demensio P. Barton, Venkat R. Bhethanabotla, Scott W. CampbellAbstract:Total pressure measurements at 313.15 K are reported for binary systems of methanol with each of seven pentanol isomers: 1-pentanol, 2-pentanol, 3-pentanol, 2-methyl-1-butanol, 2-methyl-2-butanol, 3-methyl-1-butanol, and 3-methyl-2-butanol. The results were obtained using a Van Ness apparatus and were fitted to the four-suffix Margules equation using Barker`s method. The four-suffix Margules equation represents the data to within an average of approximately 0.02 kPa.
María Dolores Saquete - One of the best experts on this subject based on the ideXlab platform.
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Liquid–liquid–solid equilibria for ternary systems of water + potassium chloride + Pentanols
Fluid Phase Equilibria, 2001Co-Authors: N Boluda, Vicente Gomis, Francisco Ruiz, María Dolores Saquete, N BarnesAbstract:Liquid–liquid–solid equilibria for the ternary systemswater+potassium chloride+1-pentanol,water+potassium chloride+2-pentanol,water+potassium chloride+3-pentanol,water+potassium chloride+2-methyl-1-butanol and water+potassium chloride+2-methyl-2-butanol have been measured at 25 ºC. The data obtained have been fitted by the Setschenov equation and compared with the equilibria of several systems of water+sodium chloride+Pentanols.The authors wish to thank the DGICYT (Spain) for the financial aid for the Project PB96-0338. N. Barnes acknowledges a grant from “Agencia Española de Cooperación Internacional”, Programa de Cooperación Interuniversitaria/AL.E (1999)
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liquid liquid solid equilibria for ternary systems water sodium chloride Pentanols
Journal of Chemical & Engineering Data, 1999Co-Authors: Vicente Gomis, Francisco Ruiz, N Boluda, María Dolores SaqueteAbstract:Liquid-liquid-solid equilibria for the ternary systems water + sodium chloride + 1-pentanol, water + sodium chloride + 2-pentanol, water + sodium chloride + 3-pentanol, water + sodium chloride + 2-methyl-1-butanol, and water + sodium chloride + 2-methyl-2-butanol have been measured at 25 °C. The data obtained have been fitted by the Setschenov equation.
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Liquid-liquid-solid equilibria for ternary systems water + sodium chloride + Pentanols
Journal of Chemical & Engineering Data, 1999Co-Authors: Vicente Gomis, Francisco Ruiz, N Boluda, María Dolores SaqueteAbstract:Liquid-liquid-solid equilibria for the ternary systems water + sodium chloride + 1-pentanol, water + sodium chloride + 2-pentanol, water + sodium chloride + 3-pentanol, water + sodium chloride + 2-methyl-1-butanol, and water + sodium chloride + 2-methyl-2-butanol have been measured at 25 °C. The data obtained have been fitted by the Setschenov equation.
William E. Acree - One of the best experts on this subject based on the ideXlab platform.
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Solubility of Anthracene in Ternary 2,2,4-Trimethylpentane + Propanol + 1-Pentanol and 2,2,4-Trimethylpentane + Butanol + 1-Pentanol Mixtures
Journal of Chemical & Engineering Data, 2008Co-Authors: Brooke H. Blake-taylor, Beth A. Martine, William E. AcreeAbstract:Experimental solubilities are reported for anthracene dissolved in ternary 2,2,4-trimethylpentane + 1-propanol + 1-pentanol, 2,2,4-trimethylpentane + 2-propanol + 1-pentanol, 2,2,4-trimethylpentane + 1-butanol + 1-pentanol, and 2,2,4-trimethylpentane + 2-butanol + 1-pentanol solvent mixtures at 298.15 K and atmospheric pressure. For each of the four ternary solvent systems, 19 compositions were studied. Results of these measurements are used to test the predictive ability of the ternary solvent form of the Jouyban−Acree model (also referred to in the literature as the combined NIBS/Redlich–Kister model). Computations showed that the model predicted the observed solubility behavior to within an overall average absolute relative percentage deviation of about 1.5.
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Solubility of Anthracene in Binary Alcohol + 2-Pentanol and Alcohol + 4-Methyl-2-pentanol Solvent Mixtures
Journal of Chemical & Engineering Data, 1996Co-Authors: Joyce R. Powell, Mary E. R. Mchale, Ann-sofi M. Kauppila, William E. AcreeAbstract:Article on the solubility of anthracene in binary alcohol + 2-pentanol and alcohol + 4-methyl-2-pentanol solvent mixtures.
Venkat R. Bhethanabotla - One of the best experts on this subject based on the ideXlab platform.
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Total pressure measurements for 1-propanol + 1-pentanol, 1-propanol + 2-pentanol, 2-propanol + 1-pentanol, and 2-propanol + 2-pentanol at 313.15 K
Fluid Phase Equilibria, 1997Co-Authors: Kevin Mara, Venkat R. Bhethanabotla, Scott W. CampbellAbstract:Abstract Total pressure measurements at 313.15 K are reported for 1-propanol + 1-pentanol, 1-propanol + 2-pentanol, 2-propanol + 1-pentanol, and 2-propanol + 2-pentanol. The results were obtained using a Van Ness apparatus and were fitted to the three-suffix Margules equation using Barker's method. The Margules equation represents the data to within an average of 0.01 kPa.
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Total vapor pressure measurements for heptane + 1-pentanol, + 2-pentanol, + 3-pentanol, + 2-methyl-1-butanol, + 2-methyl-2-butanol, + 3-methyl-1-butanol, and + 3-methyl-2-butanol at 313.15 K
Journal of Chemical & Engineering Data, 1997Co-Authors: Jonathon M. Rhodes, Venkat R. Bhethanabotla, Scott W. CampbellAbstract:Total vapor pressure measurements at 313.15 K are reported for binary systems of heptane with each of seven pentanol isomers: 1-pentanol, 2-pentanol, 3-pentanol, 2-methyl-1-butanol, 2-methyl-2-but...
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Binary total pressure measurements for methanol with 1-pentanol, 2-pentanol, 3-pentanol, 2-methyl-1-butanol, 2-methyl-2-butanol, 3-methyl-1-butanol, and 3-methyl-2-butanol at 313.15 K
Journal of Chemical & Engineering Data, 1996Co-Authors: Demensio P. Barton, Venkat R. Bhethanabotla, Scott W. CampbellAbstract:Total pressure measurements at 313.15 K are reported for binary systems of methanol with each of seven pentanol isomers: 1-pentanol, 2-pentanol, 3-pentanol, 2-methyl-1-butanol, 2-methyl-2-butanol, 3-methyl-1-butanol, and 3-methyl-2-butanol. The results were obtained using a Van Ness apparatus and were fitted to the four-suffix Margules equation using Barker`s method. The four-suffix Margules equation represents the data to within an average of approximately 0.02 kPa.
Vicente Gomis - One of the best experts on this subject based on the ideXlab platform.
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Liquid–liquid–solid equilibria for ternary systems of water + potassium chloride + Pentanols
Fluid Phase Equilibria, 2001Co-Authors: N Boluda, Vicente Gomis, Francisco Ruiz, María Dolores Saquete, N BarnesAbstract:Liquid–liquid–solid equilibria for the ternary systemswater+potassium chloride+1-pentanol,water+potassium chloride+2-pentanol,water+potassium chloride+3-pentanol,water+potassium chloride+2-methyl-1-butanol and water+potassium chloride+2-methyl-2-butanol have been measured at 25 ºC. The data obtained have been fitted by the Setschenov equation and compared with the equilibria of several systems of water+sodium chloride+Pentanols.The authors wish to thank the DGICYT (Spain) for the financial aid for the Project PB96-0338. N. Barnes acknowledges a grant from “Agencia Española de Cooperación Internacional”, Programa de Cooperación Interuniversitaria/AL.E (1999)
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liquid liquid solid equilibria for ternary systems water sodium chloride Pentanols
Journal of Chemical & Engineering Data, 1999Co-Authors: Vicente Gomis, Francisco Ruiz, N Boluda, María Dolores SaqueteAbstract:Liquid-liquid-solid equilibria for the ternary systems water + sodium chloride + 1-pentanol, water + sodium chloride + 2-pentanol, water + sodium chloride + 3-pentanol, water + sodium chloride + 2-methyl-1-butanol, and water + sodium chloride + 2-methyl-2-butanol have been measured at 25 °C. The data obtained have been fitted by the Setschenov equation.
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Liquid-liquid-solid equilibria for ternary systems water + sodium chloride + Pentanols
Journal of Chemical & Engineering Data, 1999Co-Authors: Vicente Gomis, Francisco Ruiz, N Boluda, María Dolores SaqueteAbstract:Liquid-liquid-solid equilibria for the ternary systems water + sodium chloride + 1-pentanol, water + sodium chloride + 2-pentanol, water + sodium chloride + 3-pentanol, water + sodium chloride + 2-methyl-1-butanol, and water + sodium chloride + 2-methyl-2-butanol have been measured at 25 °C. The data obtained have been fitted by the Setschenov equation.