Pervaporative Dehydration of 2,3-Butanediol by Dense Poly(vinylidene fluoride) Hollow Fiber Membranes: Parameter Estimation, Process Design, and Technoeconomic Evaluation under Uncertainty. [PDF]
Avendano M +7 more
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Prognostication of advanced CO<sub>2</sub> capture using tunable solvents with an ensemble learning-based decision tree model. [PDF]
Soleimani R +4 more
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Solubility Modeling for Key Organic Compounds Used in Adavosertib (Anticancer API) Manufacturing. [PDF]
Blair M +3 more
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Liquid-Liquid and Vapor-Liquid-Liquid Equilibria of the Alkyl Palmitate + Alkyl-OH + Glycerol Systems at 101.3 kPa-Measurements, Quality Test/Consistency, Thermodynamic Modeling and Molecular Dynamics Simulations. [PDF]
Carvalho F +6 more
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Experimental and Modeling Study of a Semi-Continuous Slurry Reactor-Pervaporator System for Isoamyl Acetate Production Using a Commercial Pervaporation Membrane. [PDF]
Gómez-García MÁ +2 more
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Evaluating the Effectiveness of Reference Solvent Solubility Calculations for Binary Mixtures Based on Pure Solvent Solubility: The Case of Phenolic Acids. [PDF]
Cysewski P +4 more
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Studies on the Deviation of a Solution from the Hypothetical Ideal Solution with the Total Activity Coefficient. [PDF]
Zhou Y, Chen F, Zhou Y.
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Modeling of CO2 solubility and partial pressure in blended diisopropanolamine and 2-amino-2-methylpropanol solutions via response surface methodology and artificial neural network. [PDF]
Khoshraftar Z.
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Modeling electrolyte solutions with the extended universal quasichemical (UNIQUAC) model
Pure and Applied Chemistry, 2005Abstract The extended universal quasichemical (UNIQUAC) model is a thermodynamic model for solutions containing electrolytes and nonelectrolytes. The model is a Gibbs excess function consisting of a Debye–Hückel term and a standard UNIQUAC term. The model only requires binary ion-specific interaction parameters.
KAJ Thomsen
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Abstract Sorption behaviors were investigated for ethanol/water mixtures in polydimethylsiloxane (PDMS) films at 298 K in this study. The classic UNIversal QUAsi Chemical (UNIQUAC) model and UNIQUAC-HB theory (the UNIQUAC model accounting for the hydrogen bonding effect) were employed to predict the individual sorption levels from various ethanol ...
Shingjiang Jessie Lue
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