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Non-invasive analysis in micro-reactors using Raman spectrometry with a specially designed probe

机译:使用特殊设计的探针通过拉曼光谱法在微反应器中进行非侵入性分析

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An optical interface has been designed to maximise the sensitivity and spatial resolution required when Raman spectrometry is used to monitor a reaction in a micro-reactor, revealing advantages over a conventional commercial probe. A miniature aspheric lens was shown to be better than microscope objectives to focus the probing laser beam onto the sample. The diameters of the exciting and collection optical fibres were also shown to have a significant influence on sensitivity and the signal-to-background ratio, with 62.5 μm diameter 0.28 numerical aperture (NA) fibres found to be best for analysis of liquids in the 150 μm deep channel in the micro-reactor used. With a spectral measurement time of 2 s, it was shown that the probe could monitor the progress of an esterification reaction in real time and quickly optimise the reagent flow rates. The fast response time revealed features related to short-term pump instabilities and micro-reactor rheology effects that would not have been identified without rapid real-time measurements.
机译:当使用拉曼光谱法监测微反应器中的反应时,已设计了光学接口以最大化所需的灵敏度和空间分辨率,这显示了优于常规商业探针的优势。结果表明,微型非球面透镜比显微镜物镜更好地将探测激光束聚焦到样品上。激发和收集光纤的直径也显示出对灵敏度和信噪比的显着影响,发现直径62.5μm的0.28数值孔径(NA)光纤最适合分析150种液体在微反应器中使用深微米的通道。光谱测量时间为2 s,表明该探针可以实时监测酯化反应的进程并快速优化试剂流速。快速的响应时间揭示了与短期泵不稳定性和微反应器流变学效应相关的功能,而这些功能如果不进行快速的实时测量就无法确定。

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