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Experimental and Thermodynamic Modeling of Quaternary Aqueous Two-Phase System of Poly Ethylene Glycol, Sodium Tartrate, Water and Penicillin G

机译:聚乙二醇,酒石酸钠,水和青霉素G的季季水性两相体系实验和热力学建模

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摘要

In present study, the liquid-liquid equilibrium of the quaternary system of polyethylene glycol (PEG) (with molar masses of 1000, 2000, 6000, and 8000 g center dot mol(-1)), sodium tartrate salt, Penicillin G and water at 298 K were investigated. The partitioning of Penicillin G between two aqueous phases was also reported. The extended non random two liquid (NRTL) and extended Universal Quasi Chemical (UNIQUAC) models were used to correlate the experimental equilibrium data. The parameters of these activity coefficient models were optimized for the investigated systems. The results show that the polymer molar mass has a dominant effect on the partition coefficient of Penicillin G. Also, results of both thermodynamic models were very satisfactory and satisfactory predicted the equilibrium concentrations of the components in ATPS. Comparison of the absolute average deviation of the two models shows that the extended UNIQUAC model was superior to the extended NRTL model for correlation and interpolation of phase equilibrium data.
机译:在目前的研究中,聚乙二醇(PEG)的季型系统的液 - 液平衡(具有1000,2000,6000和8000g中心点Mol(-1)的摩尔质量,酒石酸钠,青霉素G和水在298 k下进行了调查。还报道了两种水相之间青霉素G的分区。扩展非随机两种液体(NRTL)和扩展通用准化学(UNIQUAC)模型用于将实验性平衡数据相关联。这些活动系数模型的参数针对调查系统进行了优化。结果表明,聚合物摩尔质量对青霉素G分配系数具有显着效果。此外,热力学模型的结果非常令人满意,并且令人满意的预测ATP中组分的平衡浓度。两种模型的绝对平均偏差的比较表明,扩展的uniquac模型优于扩展的NRTL模型,用于相位平衡数据的相关性和插值。

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