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Design Features Of Microfluidic Reactor For 18FFDG Radiopharmaceutical Synthesis

机译:18F FDG放射性药物合成微流体反应器的设计特征

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Microfluidic reactor exhibits advantages for radiopharmaceutical synthesis. Microfluidic chips can reduce the time for radiosynthesis using tiny quantities of chemical compounds. It also has a good heat transfer, performance and provides an integrated system including synthesis, separation, and purification. These advantages make FDG production. So we have designed a microreactor chip which included the whole chemical processing; water evaporation, solvent exchange, radiofluorination and so on. It was designed by using a commercial 3D CAD modeling program CATIA V5, heat transfer performance was analyzed by ANSYS, and CFX was used for analyzing fluid performance. This paper described the design of FDG synthesis system on a microchip, the relevant locations of its parts, both heat and fluid performance efficiency analysis.
机译:微流体反应器表现出优势的放射性药物合成。微流体芯片可以使用微量化学化合物减少可热合成的时间。它还具有良好的传热,性能,并提供一种集成系统,包括合成,分离和纯化。这些优势使FDG生产。因此,我们设计了一种微反应器芯片,包括整个化学加工;水蒸发,溶剂交换,辐射氟化等。它是通过使用商业3D CAD建模程序CATIA V5设计的,通过ANSYS分析传热性能,CFX用于分析流体性能。本文描述了FDG合成系统在微芯片上的设计,其部件的相关位置,热和流体性能效率分析。

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