含CO2 + (C8/C10 -醇与C12/C14/C16甲酯)系统的高压气泡和露点数据

IF 2 3区 工程技术 Q3 CHEMISTRY, MULTIDISCIPLINARY
Susanna H. Du Plessis, Ashmika Balaram and Cara E. Schwarz*, 
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引用次数: 0

摘要

为含有二氧化碳(C8或C10 1-醇)和(C12或C14或C16甲酯)的三元体系生成了六个新的高压气泡和露点数据集。这些数据是在308.15至358.15 K温度下,在总溶质质量分数为0.020至0.640之间的固定还原溶质质量分数为0.5000的条件下测量的。CO2 + 1-辛醇+十四烷酸甲酯/十六烷酸甲酯体系和CO2 + 1-癸醇+十六烷酸甲酯体系由于同类分子之间的优先相互作用而被证明是共溶剂。与CO2 + 1-醇+正构烷烃三元体系相比,CO2 + 1-醇+甲酯三元体系的共溶剂性一直较低,这表明1-醇和甲酯分子之间可能发生交联,降低了由于甲酯破坏相邻1-醇之间的氢键而预期的溶解度增强。RK-Aspen模型仅包括溶质+溶剂二元相互作用参数,对所测相行为数据提供了充分的描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-Pressure Bubble- and Dew-Point Data for Systems Containing CO2 + (C8/C10 1-Alcohol with C12/C14/C16 Methyl Ester) Systems

Six new high-pressure bubble- and dew-point data sets have been generated for ternary systems containing carbon dioxide (C8 or C10 1-alcohols) and (C12 or C14 or C16 methyl esters). These data were measured at a fixed reduced solute mass fraction of 0.5000 between a total solute mass fraction of 0.020 to 0.640 at temperatures between 308.15 and 358.15 K. The CO2 + 1-octanol + methyl tetradecanoate/methyl hexadecanoate and CO2 + 1-decanol + methyl hexadecanoate systems were shown to be cosolvent due to preferential interactions between like molecules. In comparison to the CO2 + 1-alcohol + n-alkane ternary systems, the CO2 + 1-alcohol + methyl ester ternary systems are consistently less cosolvent, indicating that cross-association potentially occurs between the 1-alcohol and methyl ester molecules, decreasing the solubility enhancement that is expected due to the disruption of the hydrogen bonding between neighboring 1-alcohols by the methyl ester. The RK-Aspen model is shown to provide an adequate description of the measured phase behavior data including only solute + solvent binary interaction parameters.

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来源期刊
Journal of Chemical & Engineering Data
Journal of Chemical & Engineering Data 工程技术-工程:化工
CiteScore
5.20
自引率
19.20%
发文量
324
审稿时长
2.2 months
期刊介绍: The Journal of Chemical & Engineering Data is a monthly journal devoted to the publication of data obtained from both experiment and computation, which are viewed as complementary. It is the only American Chemical Society journal primarily concerned with articles containing data on the phase behavior and the physical, thermodynamic, and transport properties of well-defined materials, including complex mixtures of known compositions. While environmental and biological samples are of interest, their compositions must be known and reproducible. As a result, adsorption on natural product materials does not generally fit within the scope of Journal of Chemical & Engineering Data.
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