Study of thermodynamic and acoustic properties of DEGMME/ DEGMEE in aqueous erythritol solutions at different temperatures

IF 2.2 3区 工程技术 Q3 CHEMISTRY, PHYSICAL Journal of Chemical Thermodynamics Pub Date : 2024-12-27 DOI:10.1016/j.jct.2024.107446
Harsimaran Kaur , Nabaparna Chakraborty , K.C. Juglan , Arun Upmanyu
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Abstract

Artificial sweeteners also known as non-caloric sweeteners, have surged in popularity owing to their sweet taste and lack of metabolic impact. Sugar alcohols have applications in various food products, thereby holding a significant position in both the food and pharmaceutical sectors. Erythritol is a type of sugar alcohol, it plays a significant role in the present study as a key component of a ternary mixture. Other important components of this study are DEGMME (diethylene glycol monomethyl ether) and DEGMEE (diethylene glycol monoethyl ether). These are basically glycol ethers that are used in many industries for different purposes. Using values of density, ρ, and speed of sound, c, for a ternary mixture at various concentrations (0.10, 0.20, and 0.30) molkg-1, this study calculates volumetric and acoustic properties at different four temperatures (288.15––318.15 K). Additionally, other useful parameters such as limiting apparent molar expansibilities (Eϕ0) and its first-order derivatives Eϕ0/Tp were also calculated. Unlike previous research, which primarily focused on binary mixtures, this study delves into a more complex system, and providing valuable insights into solvation behaviour and molecular interactions. These results, derived from precise measurements using a Density and Sound Analyzer (DSA), that provide a comprehensive understanding of the interaction behaviour and structural changes within the studied systems.
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不同温度下赤藓糖醇水溶液中 DEGMME/ DEGMEE 的热力学和声学特性研究
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来源期刊
Journal of Chemical Thermodynamics
Journal of Chemical Thermodynamics 工程技术-热力学
CiteScore
5.60
自引率
15.40%
发文量
199
审稿时长
79 days
期刊介绍: The Journal of Chemical Thermodynamics exists primarily for dissemination of significant new knowledge in experimental equilibrium thermodynamics and transport properties of chemical systems. The defining attributes of The Journal are the quality and relevance of the papers published. The Journal publishes work relating to gases, liquids, solids, polymers, mixtures, solutions and interfaces. Studies on systems with variability, such as biological or bio-based materials, gas hydrates, among others, will also be considered provided these are well characterized and reproducible where possible. Experimental methods should be described in sufficient detail to allow critical assessment of the accuracy claimed. Authors are encouraged to provide physical or chemical interpretations of the results. Articles can contain modelling sections providing representations of data or molecular insights into the properties or transformations studied. Theoretical papers on chemical thermodynamics using molecular theory or modelling are also considered. The Journal welcomes review articles in the field of chemical thermodynamics but prospective authors should first consult one of the Editors concerning the suitability of the proposed review. Contributions of a routine nature or reporting on uncharacterised materials are not accepted.
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