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In-line Analysis of Chemical Reactions in Micro Reactors using Thermal Mass Flow Sensors

机译:使用热质量流量传感器在微量反应器中的化学反应在线分析

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In this contribution we present a dual thermal mass flow sensor arrangement based on the thermo-transfer principle (calorimeter) for in-line monitoring of liquid phase chemical reactions in residence time micro reactors. Focus is on micro plants used in chemical micro process engineering. Studies are based on commercially available sensors for low mass flow rates using constant power mode. We chose the homogeneously catalyzed synthesis of butyl acetate as reactive model system for the characterization of the sensor system. Special attention was paid to the achievable sensitivity against relative changes in the isobaric heat capacity in the presence of two different flow pulsation regimes. Separation between flow and heat capacity induced changes in the sensor signal was investigated using pure organic solvents with known thermal properties. The chemical model system was processed in a residence time micro reactor integrated in a micro plant with one thermal mass flow sensor at the inlet and at the outlet of the micro reaction channel. Changes in the differential signal during chemical conversion and phase transition as a function of residence time were analyzed.
机译:在该贡献中,我们基于热传递原理(热量计)来提出一种双热质量流量传感器装置,用于在停留时间微量反应器中的液相化学反应的在线监测。重点是在化学微型工艺工程中使用的微植物。研究基于使用恒定功率模式的低质量流量的市售传感器。我们选择均匀地催化乙酸丁酯作为反应模型系统的合成,以表征传感器系统。在两个不同的流量脉动制度存在下,对可实现的对等异物热容量的相对变化的可实现敏感性的特别关注。使用具有已知热性质的纯有机溶剂研究了流动和热容量之间的分离和传感器信号中的变化。将化学模型系统在分居时间微抗反应器中加工,在微植物中,在进口的一个热质量流量传感器和微反应通道的出口处。分析了化学转换期间的差分信号的变化和作为停留时间的函数的相位转变。

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