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基于光纤的拉曼探针在高压催化加氢反应在线反应监测中的适用性。

Applicability of fiber-optic-based Raman probes for on-line reaction monitoring of high-pressure catalytic hydrogenation reactions.

作者信息

Hamminga Gerben M, Mul Guido, Moulijn Jacob A

机构信息

Reactor and Catalysis Engineering, Delft University of Technology, Julianalaan 136, 2628 BL, The Netherlands.

出版信息

Appl Spectrosc. 2007 May;61(5):470-8. doi: 10.1366/000370207780807768.

Abstract

This study evaluates the applicability of fiber-optic-based Raman probes for on-line reaction monitoring of high-pressure catalytic hydrogenation reactions in batch autoclaves. First, based on trends in the strong intensity of the 945 cm(-1) C-O-C vibration of 1,3-dioxolane, the effect of various experimental parameters on sensitivity was evaluated and can be summarized as follows: (1) above 500 rpm a linear increase in stirring speed induces a linear decrease in Raman intensity; (2) a linear increase in hydrogen pressure also leads to a linear decrease of the Raman signal; (3) linear temperature elevation exponentially decreases the Raman intensity; and (4) increasing the catalyst particle concentration results in a steep nonlinear decrease of the Raman signal. Light scattering by gas bubbles, or combined scattering and absorption by (black) catalyst particles, reducing the amount of light collected by the optical fiber probe, explain the observed experimental trends. Second, the sensitivity of Raman spectroscopy was directly compared with attenuated total reflection-Fourier transform infrared (ATR-FT-IR) spectroscopy in the analysis of three different hydrogenation reactions over a Cu-ZnO catalyst. From the applied target molecules, diethyl maleate hydrogenation could be very well analyzed by Raman spectroscopy due to the high Raman scattering efficiency of the C=C bond, while for analysis of the hydrogenation of gamma-butyrolactone or 1-butanal, ATR-FT-IR is the technique of choice.

摘要

本研究评估了基于光纤的拉曼探针在间歇式高压釜中高压催化加氢反应在线监测中的适用性。首先,基于1,3 - 二氧戊环在945 cm(-1)处C - O - C振动的强强度趋势,评估了各种实验参数对灵敏度的影响,可总结如下:(1)搅拌速度高于500 rpm时,搅拌速度的线性增加会导致拉曼强度呈线性下降;(2)氢气压力的线性增加也会导致拉曼信号线性下降;(3)温度线性升高会使拉曼强度呈指数下降;(4)催化剂颗粒浓度增加会导致拉曼信号急剧非线性下降。气泡引起的光散射,或(黑色)催化剂颗粒的散射和吸收共同作用,减少了光纤探头收集的光量,解释了观察到的实验趋势。其次,在分析Cu - ZnO催化剂上的三种不同加氢反应时,将拉曼光谱的灵敏度与衰减全反射 - 傅里叶变换红外(ATR - FT - IR)光谱进行了直接比较。在所应用的目标分子中,由于C = C键的高拉曼散射效率,马来酸二乙酯加氢反应可以通过拉曼光谱很好地分析,而对于γ - 丁内酯或1 - 丁醛加氢反应的分析,ATR - FT - IR是首选技术。

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