School of Chemistry, The University of Nottingham, University Park, Nottingham, NG7 2RD UK.
Appl Spectrosc. 2013 Oct;67(10):1127-31. doi: 10.1366/13-06999.
The use of automated continuous flow reactors is described, with real-time online Fourier transform infrared spectroscopy (FT-IR) analysis to enable rapid optimization of reaction yield using a self-optimizing feedback algorithm. This technique has been applied to the solvent-free methylation of 1-pentanol with dimethyl carbonate using a γ-alumina catalyst. Calibration of the FT-IR signal was performed using gas chromatography to enable quantification of yield over a wide variety of flow rates and temperatures. The use of FT-IR as a real-time analytical technique resulted in an order of magnitude reduction in the time and materials required compared to previous studies. This permitted a wide exploration of the parameter space to provide process understanding and validation of the optimization algorithms.
描述了自动化连续流反应器的使用,结合实时在线傅里叶变换红外光谱(FT-IR)分析,利用自优化反馈算法实现反应产率的快速优化。该技术已应用于γ-氧化铝催化剂作用下,碳酸二甲酯无溶剂条件下对 1-戊醇的甲酯化反应。通过气相色谱对 FT-IR 信号进行校准,使在各种流速和温度下都能对产率进行定量。与以前的研究相比,使用 FT-IR 作为实时分析技术可以将所需的时间和材料减少一个数量级。这使得可以广泛探索参数空间,从而提供对工艺的理解并验证优化算法。