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首页> 外文期刊>The Journal of Chemical Thermodynamics >Experimental study and thermodynamic modelling of penicillin-G extraction using PEG 6000 and K(2)HPO4 aqueous two-phase system
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Experimental study and thermodynamic modelling of penicillin-G extraction using PEG 6000 and K(2)HPO4 aqueous two-phase system

机译:PEG 6000和K(2)HPO4水性两相系统使用PEGILIN-G提取的实验研究和热力学建模

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The use of extractive fermentation in penicillin production can overcome the low yield of penicillin. In this study, the liquid-liquid equilibrium (LLE) data of the ternary aqueous two-phase system (ATPS) of (polyethylene glycol 6000 + dipotassium hydrogen phosphate + water) at 298.2 K were measured. Then, penicillin G was added to the ternary ATPS and the LLE of the quaternary system at 298.2 K was measured. The maximum distribution coefficient of 15.63 was experimentally observed for penicillin G that indicates the good performance of the system in separating penicillin G from the fermentation broth. The experimental LLE data were modeled with the NRTL model with average mass fraction deviations of 0.004 for both ternary and quaternary systems. The model is employed to investigate the effect of mixture composition on the distribution coefficient of penicillin G. The results show that the decrease of water in the mixture increases significantly the distribution coefficient of penicillin G, while increasing K2HPO4 has a small positive effect on the distribution coefficient. (C) 2018 Elsevier Ltd.
机译:在青霉素生产中使用萃取发酵可以克服青霉素的低产量。在该研究中,测量了298.2K的(聚乙二醇6000 + Dipothate +水)的三元水性两相系统(ATP)的液 - 液平衡(LLE)数据。然后,将青霉素G加入到三元ATP中,并测量季铵系统的曲线。对于青霉素G,实验观察到15.63的最大分布系数,其表明系统在从发酵液中分离出青霉素G时的良好性能。实验性LLE数据与NRTL模型进行建模,对于三元和四元系统,具有0.004的平均质量分数偏差。该模型用于研究混合物组合物对青霉素G分布系数的影响。结果表明,混合物中的水降低显着增加了青霉素G的分布系数,同时增加了K2HPO4对分布的浓度较小的积极影响系数。 (c)2018年elestvier有限公司

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