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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >The use of NIR as a multi-parametric in situ monitoring technique in filamentous fermentation systems
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The use of NIR as a multi-parametric in situ monitoring technique in filamentous fermentation systems

机译:NIR在丝状发酵系统中用作多参数原位监测技术

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The use of Fourier transform near infrared (FT-NIR) spectroscopy for simultaneous determination of multiple properties in an active pharmaceutical ingredient (API) fermentation process is described, together with procedures for developing accurate NIR calibrations with a performance independent of scale and the specific bioreactor used. Measurements were made in situ, by insertion of transtlection probes into pilot and industrial bioreactors providing direct contact with the fermentation culture media. The ultimate goal was to establish methods for real time process monitoring aimed at enhanced process supervision, fault detection diagnosis and control of bioreactors. The in situ acquired spectra were related to lab results of samples taken from the reactors during the course of the manufacturing process. Suitable spectral wavenumber regions were selected and calibration models based on partial least squares (PLS) were developed. The root mean square errors of prediction for API content, viscosity, nitrogen source and carbon source concentration were all within acceptable ranges as compared to the off-line lab measurements, respectively, 0.03% (w/w), 150 cp, 0.01% (w/w), and 0.4% (w/w). (c) 2008 Elsevier B.V. All rights reserved.
机译:描述了使用傅里叶变换近红外(FT-NIR)光谱技术同时测定活性药物成分(API)发酵过程中的多种特性,以及开发精确的NIR校准方法的程序,其性能与规模和特定生物反应器无关用过的。通过将转移探针插入提供直接与发酵培养基接触的中试和工业生物反应器中,进行原位测量。最终目标是建立实时过程监控方法,以增强过程监控,故障检测诊断和生物反应器控制。原位获得的光谱与在制造过程中从反应器中采集的样品的实验室结果有关。选择合适的光谱波数区域,并开发基于偏最小二乘(PLS)的校准模型。与离线实验室测量值相比,API含量,粘度,氮源和碳源浓度的均方根误差均在可接受的范围内,分别为0.03%(w / w),150 cp,0.01%( w / w)和0.4%(w / w)。 (c)2008 Elsevier B.V.保留所有权利。

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