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Concepts for modularization and automation of microreaction technology

机译:微反应技术的模块化和自动化概念

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摘要

Two different concepts for the modularization and automation of microreaction systems are described. The modular microreaction system FAMOS was developed on the basis of a functional toolkit concept for laboratory applications of microreaction technology. Microstructured reaction modules with suitable fluidic, analytical and electronic interfaces were designed which allow the realization of even multi-stage microchemical processes like the sulfonation of toluene under thermally controlled conditions over the entire process. The automated microreaction system AuM mu Res was developed to enable an active regulation of process parameters via a process control system to perform parameter screenings for the identification of process optima. Integrated microstructured flow-through sensors and analytical interfaces were developed for the monitoring of relevant process parameters. Sampling devices for chromatographic analysis and inline Raman spectroscopy were integrated into the micoreaction system to gather relevant analytical information about the considered chemical process. By applying chemometric models, a qualitative and quantitative realtime monitoring of microchemical processes was established, as was demonstrated for different nitration reactions.
机译:描述了用于微反应系统的模块化和自动化的两种不同的概念。模块化微反应系统FAMOS是在功能性工具箱概念的基础上开发的,适用于微反应技术的实验室应用。设计了具有合适的流体,分析和电子界面的微结构化反应模块,这些模块可实现甚至多阶段的微化学过程,例如在整个过程中的热控制条件下甲苯的磺化。自动化微反应系统AuM mu Res的开发旨在通过过程控制系统对过程参数进行主动调节,以进行参数筛选以识别过程最佳状态。开发了集成的微结构流通传感器和分析接口,用于监控相关工艺参数。用于色谱分析和在线拉曼光谱分析的采样设备已集成到微处理系统中,以收集有关所考虑化学过程的相关分析信息。通过应用化学计量学模型,建立了对微化学过程的定性和定量实时监控,如不同硝化反应所证明的那样。

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