Experimental and theoretical study on liquid–liquid equilibrium of 1-butanol+water+NH4Cl at 298.15, 308.15 and 318.15K
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy,General Chemical Engineering
Reference22 articles.
1. Experimental and theoretical study on liquid–liquid equilibrium of 1-butanol+water+NaNO3 at 25 and 35°C
2. Experimental measurement and thermodynamic modeling of liquid–liquid equilibrium for 1-pentanol+water+NaNO3 at 298.15 and 308.15K
3. Electrolyte solutions: from thermodynamic and transport property models to the simulation of industrial processes
4. A speciation-based model for mixed-solvent electrolyte systems
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1. Liquid–Liquid Demixing Behavior of Aqueous 1-Butanol Solutions in the Presence of Various Organic and Inorganic Ammonium Salts: Effect of Temperature, Cation Alkyl Chain Length, and Anion Type of Salts on Salting Coefficients and Thermodynamic Functions;Journal of Chemical & Engineering Data;2023-07-03
2. A new process for separating biofuel based on the salt + 1-butanol + water system;Fuel;2020-10
3. Phase behavior for 1-butyl-3-methylimidazolium tetrafluoroborate with sodium oxalate/succinate/formate aqueous two-phase systems at 298.15 and 308.15 K;Journal of Dispersion Science and Technology;2019-09-13
4. Liquid–Liquid Equilibrium of Water + 1-Propanol or 1-Butanol + Dibutyl Ether Ternary Systems: Measurements and Correlation at Three Temperatures;Journal of Solution Chemistry;2018-03
5. Liquid–Liquid Equilibrium and Thermodynamic Modeling of Aqueous Two-Phase System Containing Polypropylene Glycol and NaClO4 at T = (288.15 and 298.15) K;Journal of Solution Chemistry;2017-12-08
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