Thermodynamics of proton dissociations from aqueous citric acid: apparent molar volumes and apparent molar heat capacities of citric acid and its sodium salts at the pressure 0.35 MPa and at temperatures from 278.15 K to 393.15 K
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Materials Science,Atomic and Molecular Physics, and Optics
Reference21 articles.
1. Heat capacities and volumes of some polybasic carboxylic acids in water at 298.15 K
2. Apparent molar volumes and heat capacities of aqueous acetic acid and sodium acetate at temperatures fromT= 278.15 K toT= 393.15 K at the pressure 0.35MPa
3. Apparent molar volumes and heat capacities of aqueousn-dodecylpyridinium chloride at molalities from 0.003 mol·kg−1to 0.15 mol·kg−1, at temperatures from 283.15 K to 393.15 K, and at the pressure 0.35MPa
4. Apparent molar volumes and apparent molar heat capacities of aqueous 2-amino-2- hydroxymethyl-propan-1,3-diol (Tris or THAM) and THAM plus equimolal HCl
5. Apparent molar volumes and apparent molar heat capacities of aqueous d-glucose and d-galactose at temperatures from 278.15 K to 393.15 K and at the pressure 0.35 MPa
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1. Comment on the Standard Molar Volumes for Citric Acid published in J. Chem. Eng. Data, 2011, 56, 3285–3290;Journal of Chemical & Engineering Data;2020-01-14
2. Volumetric Investigations on Molecular Interactions of Glycine/l-alanine in Aqueous Citric Acid Solutions at Different Temperatures;Journal of Solution Chemistry;2018-11-19
3. A new two-parameter equation for correlation and prediction of densities as a function of concentration and temperature in binary aqueous solutions;Journal of Molecular Liquids;2016-07
4. Investigations of the interactions in aqueous poly (vinyl pyrrolidone)+di-sodium hydrogen citrate solutions using vapor–liquid equilibria studies at different temperatures;Journal of Molecular Liquids;2015-11
5. The study of molecular interactions of ascorbic acid and sodium ascorbate with water at temperatures (278.15, 288.15 and 298.15)K;The Journal of Chemical Thermodynamics;2013-12
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