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实验测定和计算预测脱氢枞酸在(-)-α-蒎烯+(-)-β-石竹烯+对伞花烃体系中的溶解度。

Experimental Determination and Computational Prediction of Dehydroabietic Acid Solubility in (-)-α-Pinene + (-)-β-Caryophyllene + P-Cymene System.

机构信息

Guangxi Key Laboratory of Petrochemical Resource Processing and Process Intensification Technology, School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, China.

China Academy of Science and Technology Development Guangxi Branch, Nanning 530022, China.

出版信息

Molecules. 2022 Feb 11;27(4):1220. doi: 10.3390/molecules27041220.

Abstract

The solubility of dehydroabietic acid in (-)-α-pinene, p-cymene, (-)-β-caryophyllene, (-)-α-pinene + p-cymene, (-)-β-caryophyllene + p-cymene and (-)-α-pinene + (-)-β-caryophyllene were determined using the laser monitoring method at atmospheric pressure. The solubility of dehydroabietic acid was positively correlated with temperature from 295.15 to 339.46 K. (-)-α-pinene, p-cymene, and (-)-β-caryophyllene were found to be suitable for the solubilization of dehydroabietic acid. In addition, the non-random two liquid (NRTL), universal quasi-chemical (UNIQUAC), modified Apelblat, modified Wilson, modified Wilson-van't Hoff, and λh models were applied to correlate the determined solubility data. The modified Apelblat model gave the minor deviation for dehydroabietic acid in monosolvents, while the λh equation showed the best result in the binary solvents. A comparative analysis of compatibility between solutes and solvents was carried out using Hansen solubility parameters. The thermodynamic functions of ΔH, ΔS, ΔG were calculated according to the van't Hoff equation, indicating that the dissolution was an entropy-driven heat absorption process. The Conductor-like Screening Model for Real Solvents (COSMO-RS) combined with an experimental value was applied to predict the reasonable solubility data of dehydroabietic acid in the selected solvents systems. The interaction energy of the dehydroabietic acid with the solvent was analyzed by COSMO-RS.

摘要

在大气压下,采用激光监测法测定了脱氢枞酸在 (-)-α-蒎烯、对伞花烃、(-)-β-石竹烯、(-)-α-蒎烯+对伞花烃、(-)-β-石竹烯+对伞花烃和 (-)-α-蒎烯+(-)-β-石竹烯中的溶解度。从 295.15 到 339.46 K,脱氢枞酸的溶解度与温度呈正相关。发现 (-)-α-蒎烯、对伞花烃和 (-)-β-石竹烯适合于溶解脱氢枞酸。此外,还应用了非随机两液体(NRTL)、通用拟化学(UNIQUAC)、修正 Apelblat、修正 Wilson、修正 Wilson-vant Hoff 和 λh 模型来关联测定的溶解度数据。在单溶剂中,修正 Apelblat 模型对脱氢枞酸的偏差最小,而 λh 方程在二元溶剂中表现出最佳结果。利用 Hansen 溶解度参数对溶质和溶剂之间的相容性进行了比较分析。根据 van't Hoff 方程计算了焓变、熵变和吉布斯自由能变的热力学函数,表明溶解是一个熵驱动的吸热过程。结合实验值,采用导体相似屏蔽模型 for Real Solvents (COSMO-RS) 对脱氢枞酸在所选溶剂体系中的合理溶解度数据进行了预测。通过 COSMO-RS 分析了脱氢枞酸与溶剂的相互作用能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecb6/8875717/861139c40f86/molecules-27-01220-g001.jpg

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