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首页> 外文期刊>The Journal of Supercritical Fluids >A new approach to select solvents and operating conditions for supercritical antisolvent precipitation processes by using solubility parameter and group contribution methods
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A new approach to select solvents and operating conditions for supercritical antisolvent precipitation processes by using solubility parameter and group contribution methods

机译:通过溶解度参数和基团贡献法为超临界反溶剂沉淀过程选择溶剂和操作条件的新方法

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摘要

A new approach is proposed to select operating temperature and pressure for supercritical antisolvent particle precipitation based on solubility parameter calculated by group contribution methods and using only the critical properties of the solvent. Solubility parameters are also used to choose the most suitable organic solvent for a given application. Supercritical antisolvent precipitation operating conditions of 36 systems are investigated including 8 organic solvents (methanol, ethanol, acetone, DMSO, DCM, chloro-form, NMP and acetic acid) and 6 solid solutes (atenolol, tartaric acid, flunisolide, paracetamol, amoxicillin and cholesterol) in the temperature and pressure ranges of 25-85 °C and 50-250 bar. The results show a good agreement between the experimental and calculated data for these systems. Although particle precipitation depends on several parameters such as mass-transfer rates and hydrodynamics, the focus of this work is on the role of thermodynamics to indicate the preliminary conditions for a successful antisolvent precipitation process. Validation and results of this new approach suggest that it can be a useful tool for a qualitative and completely predictive evaluation of supercritical antisolvent particle precipitation in a cheaper way than carrying out experimental runs.
机译:提出了一种新的方法,该方法基于基团贡献法计算的溶解度参数并仅使用溶剂的临界性质,为超临界抗溶剂颗粒沉淀选择操作温度和压力。溶解度参数还用于为给定应用选择最合适的有机溶剂。研究了36种系统的超临界反溶剂沉淀操作条件,其中包括8种有机溶剂(甲醇,乙醇,丙酮,DMSO,DCM,氯仿,NMP和乙酸)和6种固体溶质(阿替洛尔,酒石酸,氟尼地松,对乙酰氨基酚,阿莫西林和胆固醇)在25-85°C和50-250 bar的温度和压力范围内。结果表明这些系统的实验数据和计算数据之间有很好的一致性。尽管颗粒沉淀取决于几个参数,例如传质速率和流体动力学,但这项工作的重点是热力学的作用,以表明成功的反溶剂沉淀过程的初步条件。这种新方法的验证和结果表明,它可以作为进行超临界抗溶剂颗粒沉淀的定性和完全预测性评估的有用工具,并且比进行实验运行便宜。

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