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首页> 外文期刊>Chemical Engineering Science >Simulation of aromatics extraction with an ionic liquid in a pilot-plant Kühni extractor based on single-drop experiments
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Simulation of aromatics extraction with an ionic liquid in a pilot-plant Kühni extractor based on single-drop experiments

机译:基于单滴实验的中试工厂Kühni萃取器中用离子液体萃取芳烃的模拟

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摘要

Pilot-plant experiments in a Kühni extractor for the extraction of toluene from a heptane+toluene mixture by means of the ionic liquid [3-mebupy][DCA] were performed. Previous work (Meindersma et al., 2010, 2012) has shown that [3-mebupy][DCA] is a promising solvent for the extraction of aromatic substances such as toluene. An alternative approach to performing time and material consuming pilot-plant experiments is modelling with the drop population-balance model ReDrop. Models in the ReDrop program accounting for different phenomena, such as drop sedimentation, drop breakage and coalescence as well as mass transfer, contain liquid-liquid system specific parameters that are fitted to lab-scale experiments with single drops. A single-drop sedimentation experiment with heptane (c)+toluene+[3-mebupy][DCA] (d) was performed and the parameters of the sedimentation model fitted to the experimental data. Models accounting for the hindrance of drop sedimentation due to column internals and models for drop breakage were taken from the literature. On this basis, the Kühni extractor was then simulated with ReDrop. Hydrodynamic parameters such as hold-up and Sauter mean diameter are in good agreement with the experimental data. Also the mass-transfer performance of the [3-mebupy][DCA] in combination with the Kühni extractor was modeled with good accuracy. It was shown that the ReDrop concept is a promising alternative to pilot-plant experiments in terms of need of materials and time to evaluate new ILs for their usability in extraction columns.
机译:在Kühni萃取器中进行了中试实验,目的是通过离子液体[3-mebupy] [DCA]从庚烷+甲苯混合物中萃取甲苯。先前的工作(Meindersma等人,2010年,2012年)表明,[3-甲基] [DCA]是用于萃取芳香族物质(例如甲苯)的有前途的溶剂。执行耗时和耗材的中试工厂实验的另一种方法是使用下降种群平衡模型ReDrop进行建模。 ReDrop程序中的模型解决了不同的现象,例如液滴沉降,液滴破裂和聚结以及传质,这些模型包含液-液系统特定的参数,这些参数适合于单个液滴的实验室规模的实验。用庚烷(c)+甲苯+ [3-甲基] [DCA](d)进行了单滴沉降实验,沉降模型的参数与实验数据相符。从文献中获得了考虑由于塔内部因素造成的液滴沉降障碍的模型和液滴破裂的模型。在此基础上,然后使用ReDrop对Kühni提取器进行了模拟。流体动力学参数,例如滞留率和Sauter平均直径与实验数据非常吻合。此外,还可以对[3-mebupy] [DCA]与Kühni萃取器结合的传质性能进行建模。结果表明,就材料和评估新ILs在萃取塔中的可用性所需的材料和时间而言,ReDrop概念是中试工厂实验的有前途的替代方法。

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