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On the Enhanced Accuracy of Kinetic Curve Building in Supercritical Fluid Extraction from Aroma Plants Using a New 3D-Printed Extract Collection Device

机译:使用新型3D打印提取物收集装置提高从芳香植物中超临界流体提取中动力学曲线构建的准确性

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摘要

Accurate collection of extracted material represents a technical problem in supercritical fluid extraction because trapping should be performed in severe conditions of rapidly moving and freezing expanded fluid. We have developed a simple device for effective sample collection in analytical-scale supercritical fluid extraction. The device consists of a cyclone separator equipped with a spray trap and a heated check valve. The cyclone separator and spray trap are manufactured from a light polymer via 3D printing and are quick-detachable, which encourages its use in applications where mass yield measurements are required. The device was compared to a standard tubing-and-vial approach in the task of building kinetic curves for the extraction from two aroma plants, namely, laurel and rosemary. The new device showed almost two-fold increase in extraction trapping, most probably due to better collection of volatile compounds. A curious effect of the number of mass measurement points per curve on apparent yield was observed. An increase in the number of points led to an increase in yield, probably due to the effect of the static–dynamic extract regime posed by the manner in which the device is used.
机译:准确收集提取的物料代表了超临界流体提取中的一个技术问题,因为应在迅速移动和冻结膨胀流体的严酷条件下进行捕集。我们已经开发出一种简单的设备,可以在分析规模的超临界流体萃取中有效地收集样品。该设备由旋风分离器组成,该旋风分离器配备了一个疏水阀和一个加热的止回阀。旋风分离器和喷雾捕集器是由轻质聚合物通过3D打印制成的,并且可快速拆卸,因此鼓励将其用于需要进行质量产率测量的应用中。在建立动力学曲线以从两种香气植物(月桂和迷迭香)中提取动力学曲线的任务中,将该设备与标准的管和小瓶方法进行了比较。新设备显示出萃取捕集阱几乎增加了两倍,这很可能是由于更好地收集了挥发性化合物。观察到每条曲线的质量测量点数对表观产率的奇怪影响。点数的增加导致产量的增加,这可能是由于使用该设备的方式所引起的静态-动态提取机制的影响。

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