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Equilibrium Solubilities of Diisooctyl Sebacate in Supercritical Carbon Dioxide

机译:癸二酸二异辛酯在超临界二氧化碳中的平衡溶解度

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The extraction of base oil from waste lubricating oil is becoming the preferred way of handling used oil to protect the environment and conserve petroleum resources. Supercritical carbon dioxide extraction has become a potential technology for the regeneration of waste lubricant oil because carbon dioxide has high dissolving power, is nontoxic, nonflammable, and inexpensive. Since the equilibrium solubility data are important for supercritical extraction processes, in this study the equilibrium solubilities for one of the synthetic ester lubricant oils, diisooctyl sebacate [bis (2-ethylhexyl) sebacate], in supercritical carbon dioxide (sc-CO2) were obtained at 313.2 K, 328.2 K, 343.2 K, 358.2 K and in a pressure range from 7.24 MPa up to 15.96 MPa. Oil solubility increased with pressure but decreased with temperature, providing sc-CO2, with the highest oil solubility (82.1959 g/L) at 313.2 K and 13.96 MPa, which showed that the solubility is strongly dependent on the density of CO2. The experimental solubility results were correlated with three density-based models: Chrastil model, del Valle and Aguilera model, and the Adachi and Lu model. While all of the three models correlated the experimental data very well, the nonlinear equation of Adachi and Lu model showed the best fit.
机译:从废润滑油中提取基础油正成为处理废油以保护环境和节约石油资源的首选方法。超临界二氧化碳的萃取已经成为废润滑油再生的潜在技术,因为二氧化碳具有高溶解力,无毒,不易燃且价格低廉。由于平衡溶解度数据对于超临界萃取过程很重要,因此在本研究中,获得了一种合成酯润滑油,癸二酸二异辛酯[癸二酸双(2-乙基己基)酯]在超临界二氧化碳(sc-CO2)中的平衡溶解度。在313.2 K,328.2 K,343.2 K,358.2 K的压力下,压力范围为7.24 MPa至15.96 MPa。石油溶解度随压力增加而随温度降低,提供sc-CO2,在313.2 K和13.96 MPa时具有最高的石油溶解度(82.1959 g / L),这表明溶解度强烈依赖于CO2的密度。实验溶解度结果与三种基于密度的模型相关:Chrastil模型,del Valle和Aguilera模型以及Adachi和Lu模型。虽然这三个模型都很好地关联了实验数据,但Adachi和Lu模型的非线性方程显示出最佳拟合。

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