Aug 2026· Journal of Chemical &
Engineering Data· Vol 71, pp. 3489-3503· 0 citations· 63 references
Abstract
The solubility of copper(II) acetylacetonate [Cu(acac)2] in carbon dioxide (CO2) and CO2/acetonitrile mixtures was measured at 313.15, 333.15, and 353.15 K and pressures up to 200 bar using a static gravimetric method. Since Cu(acac)2 decomposes before melting, its critical properties cannot be measured experimentally. To model this system alongside literature data, four thermodynamic models were evaluated: the Peng–Robinson (PR), Perturbed-Chain Statistical Associating Fluid Theory (PC-SAFT), modified Chrastil, and Méndez–Santiago–Teja equations. Regressing the critical properties within the PR framework yielded physically implausible behavior, highlighting the limitations of cubic equations of state for thermally unstable precursors. For PC-SAFT, we implemented a COSMO-constrained parametrization strategy to determine the segment parameters (m and σ), successfully circumventing parameter degeneracy. The resulting model outperformed the PR equation of state and achieved accuracy comparable to the semiempirical density-scaling correlations. For the ternary system, both the density-scaling models and PC-SAFT─utilizing a cross-association scheme─satisfactorily reproduced the cosolvent-induced solubility enhancement. This improvement is attributed to localized Lewis acid–base coordination between the nitrile lone pair and the electron-deficient copper center.
The solubility behavior of 4-chlorobenzophenone (4-CBP) was measured in 16 pure solvents (eight alcohols, four ketones, three esters, and acetonitrile) from 271.95 to 324.05 K at atmospheric pressure. X-ray powder diffraction confirmed crystal stability during dissolution, while differential scanning calorimetry dete...
Yu-Jiang Ke, Xiao-Fang Li, Le-Mei Huang et al.· Journal of Chemical & En...· 0 citations
Vapor–liquid equilibrium (VLE) data for a binary system consisting of perfluorobutane (C4F10) + hydrogen (H2) were measured at three temperatures (293.33, 313.34, and 333.38) K and pressures up to 17.893 MPa, using a static analytical apparatus. Phase sampling was performed via a rapid online sampler injector, and ph...
M. M. Tshibangu, C. Coquelet, Caleb Narasigadu et al.· Journal of Chemical &
En...· 0 citations
Carbon dioxide (CO₂) capture is conventionally performed using aqueous monoethanolamine (MEA), but its industrial application is limited by high regeneration energy, solvent degradation, corrosion, and environmental concerns. Deep eutectic solvents (DESs) have emerged as promising alternatives because of their low vola...
R. Tetrisyanda, Kuswandi Wahyudiono, G. Wibawa· EPJ Web of Conferences· 0 citations
In this work, we present a comprehensive kinetic analysis of ammonia desorption from a series of titanium silicalite-1 (TS-1) samples, including both commercial (ZD-07031) and laboratory-synthesized materials with varying titanium content and textural properties. The classical Polanyi–Wigner model, despite yielding hig...
Xiao-Yang Wang, E. Luzina, V. Vdovichenko et al.· Journal of Materials Science...· 0 citations
In a recent article titled “Solubility Determination and Correlation of 2-Methyl-6-propionylnaphthalene in Pure Solvents and Binary Solvent Systems (Water + Methanol/Ethanol/n-Propanol) from 278.15 to 318.15 K” published in this journal, Li et al. reported the solubility behavior of 2-methyl-6-propionylnaphthalene (2...
Fo-Gen Chen, Yun-Lan Zhu, Jing-Wen Meng et al.· Journal of Chemical &
En...· 1 citation
Deep eutectic solvents (DESs) have emerged as promising alternatives to conventional alkanolamines for CO2 capture because of their low volatility, tunable molecular interactions, and ease of preparation. This study investigates CO2 solubility in a ChCl/MDEA (1:6) DES and its aqueous mixtures (5, 10, and 15 wt % wate...
Hossein Ghanbari, A. Haghtalab· Journal of Chemical &
En...· 0 citations
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