Division Process Analytical Technology, Bundesanstalt für Materialforschung und -prüfung (BAM), Richard-Willstaetter-Str. 11, 12489, Berlin, Germany.
Department Measurement and Control, Institute of Process Engineering, Berlin University of Technology, Hardenbergstr. 36a, 10623, Berlin, Germany.
Anal Bioanal Chem. 2018 May;410(14):3349-3360. doi: 10.1007/s00216-018-1020-z. Epub 2018 Apr 4.
Monitoring specific chemical properties is the key to chemical process control. Today, mainly optical online methods are applied, which require time- and cost-intensive calibration effort. NMR spectroscopy, with its advantage being a direct comparison method without need for calibration, has a high potential for enabling closed-loop process control while exhibiting short set-up times. Compact NMR instruments make NMR spectroscopy accessible in industrial and rough environments for process monitoring and advanced process control strategies. We present a fully automated data analysis approach which is completely based on physically motivated spectral models as first principles information (indirect hard modeling-IHM) and applied it to a given pharmaceutical lithiation reaction in the framework of the European Union's Horizon 2020 project CONSENS. Online low-field NMR (LF NMR) data was analyzed by IHM with low calibration effort, compared to a multivariate PLS-R (partial least squares regression) approach, and both validated using online high-field NMR (HF NMR) spectroscopy. Graphical abstract NMR sensor module for monitoring of the aromatic coupling of 1-fluoro-2-nitrobenzene (FNB) with aniline to 2-nitrodiphenylamine (NDPA) using lithium-bis(trimethylsilyl) amide (Li-HMDS) in continuous operation. Online 43.5 MHz low-field NMR (LF) was compared to 500 MHz high-field NMR spectroscopy (HF) as reference method.
监测特定的化学性质是化学过程控制的关键。如今,主要应用的是光学在线方法,这些方法需要耗费大量的时间和成本进行校准。NMR 光谱学具有无需校准的直接比较方法的优势,在实现闭环过程控制方面具有很大的潜力,同时还具有设置时间短的特点。紧凑型 NMR 仪器使得 NMR 光谱学在工业和恶劣环境中可用于过程监测和先进的过程控制策略。我们提出了一种完全自动化的数据分析方法,该方法完全基于物理驱动的谱模型作为第一原理信息(间接硬建模-IHM),并将其应用于欧盟地平线 2020 项目 CONSENS 框架内的给定药物锂化反应中。通过 IHM 对在线低场 NMR(LF NMR)数据进行分析,与多元 PLS-R(偏最小二乘回归)方法相比,校准工作量较低,并使用在线高场 NMR(HF NMR)光谱对其进行验证。示意图 用锂双(三甲基甲硅烷基)酰胺(Li-HMDS)在连续操作中监测 1-氟-2-硝基苯(FNB)与苯胺偶联生成 2-硝基二苯胺(NDPA)的芳香偶联的 NMR 传感器模块。在线 43.5 MHz 低场 NMR(LF)与 500 MHz 高场 NMR 光谱(HF)进行比较,后者作为参考方法。