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Highly Sensitive Raman Spectroscopy with Low Laser Power for Fast In-Line Reaction and Multiphase Flow Monitoring

机译:具有低激光功率的高灵敏度拉曼光谱仪,用于快速在线反应和多相流监测

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摘要

In process analytics, the applicability of Raman spectroscopy is restricted by high excitation intensities or the long integration times required. In this work, a novel Raman system was developed to minimize photon flux losses. It allows specific reduction of spectral resolution to enable the use of Raman spectroscopy for real-time analytics when strongly increased sensitivity is required. The performance potential of the optical setup was demonstrated in two exemplary applications: First, a fast exothermic reaction (Michael addition) was monitored with backscattering fiber optics under strongly attenuated laser power (7 mW). Second, high-speed scanning of a segmented multiphase flow (water/toluene) with submicroliter droplets was achieved by aligning the focus of a coaxial Raman probe with long focal length directly into a perfluoroalkoxy (PFA) capillary. With an acquisition rate of 333 Raman spectra per second, chemical information was obtained separately for both of the rapidly alternating phases. The experiment with reduced laser power demonstrates that the technique described in this paper is applicable in chemical production processes, especially in hazardous environments. Further potential uses can be envisioned in medical or biological applications with limited power input. The realization of high-speed measurements shows new possibilities for analysis of heterogeneous phase systems and of fast reactions or processes.
机译:在过程分析中,高激发强度或所需的长积分时间限制了拉曼光谱的适用性。在这项工作中,开发了一种新颖的拉曼系统以最小化光子通量损失。当需要大大提高灵敏度时,它可以特定地降低光谱分辨率,从而可以将拉曼光谱用于实时分析。光学装置的性能潜力在两个示例性应用中得到了证明:首先,在强烈衰减的激光功率(7 mW)下,通过反向散射光纤监测了快速放热反应(迈克尔加法)。其次,通过将具有长焦距的同轴拉曼探针的焦点直接对准全氟烷氧基(PFA)毛细管,可以实现对具有亚微升液滴的分段多相流(水/甲苯)的高速扫描。以每秒333拉曼光谱的采集速度,分别获得了两个快速交替相的化学信息。降低激光功率的实验表明,本文描述的技术适用于化学生产过程,尤其是在危险环境中。可以设想在功率输入受限的医学或生物学应用中的其他潜在用途。高速测量的实现为分析异相系统以及快速反应或过程提供了新的可能性。

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