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首页> 外文期刊>The Journal of Chemical Thermodynamics >Solubility determination and thermodynamic models for dehydroepiandrosterone acetate in mixed solvents of (ethyl acetate plus methanol), (ethyl acetate plus ethanol) and (ethyl acetate plus isopropanol)
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Solubility determination and thermodynamic models for dehydroepiandrosterone acetate in mixed solvents of (ethyl acetate plus methanol), (ethyl acetate plus ethanol) and (ethyl acetate plus isopropanol)

机译:醋酸脱氢表雄酮在(乙酸乙酯加甲醇),(乙酸乙酯加乙醇)和(乙酸乙酯加异丙醇)混合溶剂中的溶解度测定和热力学模型

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The solubility of dehydroepiandrosterone acetate in binary solvent mixtures of (ethyl acetate + methanol), (ethyl acetate + ethanol) and (ethyl acetate + isopropanol) was determined experimentally by using an isothermal dissolution equilibrium methodwithin the temperature range from (273.15 to 313.15) K under atmosphere pressure (101.1 kPa). The solubility of dehydroepiandrosterone acetate increases with increasing temperature and mass fraction of ethyl acetate in each binary system. At the same temperature and mass fraction of ethyl acetate, the solubility of dehydroepiandrosterone acetate was greater in (ethyl acetate + isopropanol) than in the other two mixed solvents. The measured solubility values were correlated with the Jouyban-Acree model, van't Hoff-Jouyban-Acree model, and modified Apelblat-Jouyban- Acree model. The Jouyban-Acree model was proven to give better representation for the experimental solubility, which provided the lowest relative average deviation and root-mean-square deviation (0.49 x 10(-2) and 0.97 x 10(-4) for ethyl acetate + methanol, 0.44 x 10(-2) and 0.82 x 10(-4) for ethyl acetate + ethanol, and 0.92 x 10(-2) and 3.05 x 10(-4) for ethyl acetate + isopropanol, respectively). Based on the solubility values obtained, the standard dissolution enthalpies for the dissolution process were computed. The dissolution process of dehydroepiandrosterone acetate in these mixed solvents was endothermic. The experimental solubility and the equations presented in the present work can be employed as essential data and models in the practical process for production and purification of dehydroepiandrosterone acetate. (C) 2016 Elsevier Ltd.
机译:通过等温溶解平衡法在(273.15至313.15)K的温度范围内通过实验确定了乙酸脱氢表雄酮在(乙酸乙酯+甲醇),(乙酸乙酯+乙醇)和(乙酸乙酯+异丙醇)的二元溶剂混合物中的溶解度在大气压(101.1 kPa)下。在每个二元体系中,乙酸脱氢表雄酮的溶解度随温度和乙酸乙酯质量分数的增加而增加。在乙酸乙酯的相同温度和质量分数下,乙酸脱氢表雄酮在(乙酸乙酯+异丙醇)中的溶解度大于在其他两种混合溶剂中的溶解度。测得的溶解度值与Jouyban-Acree模型,van't Hoff-Jouyban-Acree模型和改良的Apelblat-Jouyban-Acree模型相关。事实证明,Jouyban-Acree模型可以更好地表示实验溶解度,对于乙酸乙酯+而言,它提供了最低的相对平均偏差和均方根偏差(0.49 x 10(-2)和0.97 x 10(-4)+甲醇,乙酸乙酯+乙醇分别为0.44 x 10(-2)和0.82 x 10(-4),乙酸乙酯+异丙醇分别为0.92 x 10(-2)和3.05 x 10(-4)。基于获得的溶解度值,计算溶解过程的标准溶解焓。乙酸脱氢表雄酮在这些混合溶剂中的溶解过程是吸热的。在本工作中提出的实验溶解度和方程式可以用作生产和纯化乙酸脱氢表雄酮的实际方法中的基本数据和模型。 (C)2016爱思唯尔有限公司

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