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Modelling and experimental study of separators for co-solventudrecovery in a supercritical extraction process

机译:助溶剂分离剂的建模与实验研究超临界萃取过程中的回收

摘要

Co-solvent recovery in supercritical extraction is addressed here through a theoretical description of the behaviour of a CO2 + co-solvent mixture into a cascade of cyclonic separators, such as those existing in conventional fractionation processes based on depressurisationudcascades. Conversely to the conventional simplified approach that considers a separator as a plain theoretical stage, our study proposes a dynamic modelling that accounts for the probable droplet entrainment by the light phase and the re-vaporisation phenomenon after the valve.udFractionation experiments of CO2 + n-propyl alcohol mixtures were operated in a three-stage fractionation pilot, and experimental results are compared with simulation ones. The study demonstrates the relevance of our modelling, and points out the importance of entrainment effects, especially for low-pressure operated separators.
机译:本文通过对CO2 +助溶剂混合物进入级​​联旋风分离器的行为的理论描述来解决超临界萃取中的助溶剂回收问题,例如传统的基于减压串联的分馏工艺中存在的旋风分离器。与将分离器视为一个简单的理论阶段的常规简化方法相反,我们的研究提出了一个动态模型,该模型考虑了轻相可能带走的液滴夹带和阀后的再蒸发现象。 -丙醇混合物在三阶段分馏试验中运行,并将实验结果与模拟结果进行比较。该研究证明了我们建模的相关性,并指出了夹带效应的重要性,特别是对于低压分离器而言。

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