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Investigation of the Variability of NIR In-line Monitoring of Roller Compaction Process by Using Fast Fourier Transform (FFT) Analysis

机译:通过快速傅里叶变换(FFT)分析对辊压实过程进行NIR在线监测的可变性

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摘要

The purpose of this research was to investigate the variability of the roller compaction process while monitoring in-line with near-infrared (NIR) spectroscopy. In this paper, a pragmatic method in determining this variability of in-line NIR monitoring roller compaction process was developed and the variability limits were established. Fast Fourier Transform (FFT) analysis was used to study the source of the systematic fluctuations of the NIR spectra. An off-line variability analysis method was developed as well to simulate the in-line monitoring process in order to determine the variability limits of the roller compaction process. For this study, a binary formulation was prepared composed of acetaminophen and microcrystalline cellulose. Different roller compaction parameters such as roll speed and feeding rates were investigated to understand the variability of the process. The best-fit line slope of NIR spectra exhibited frequency dependence only on the roll speed regardless of the feeding rates. The eccentricity of the rolling motion of rollers was identified as the major source of variability and correlated with the fluctuations of the slopes of NIR spectra. The off-line static and dynamic analyses of the compacts defined two different variability of the roller compaction; the variability limits were established. These findings were proved critical in the optimization of the experimental setup of the roller compaction process by minimizing the variability of NIR in-line monitoring.
机译:这项研究的目的是研究辊压实过程的可变性,同时使用近红外(NIR)光谱进行在线监测。本文提出了一种实用的方法来确定在线近红外监测辊压实过程的这种可变性,并建立了可变性极限。快速傅里叶变换(FFT)分析用于研究近红外光谱系统波动的来源。还开发了离线可变性分析方法,以模拟在线监控过程,以确定压实过程的可变性极限。对于本研究,制备了由对乙酰氨基酚和微晶纤维素组成的二元制剂。研究了不同的压辊参数,例如轧辊速度和进给速度,以了解工艺的可变性。 NIR光谱的最佳拟合线斜率仅取决于轧制速度,而与进给速度无关。辊子的滚动运动的偏心率被确定为变化的主要来源,并且与近红外光谱的斜率波动相关。压坯的离线静态和动态分析定义了辊压实的两种不同的变化。确定了变异性极限。通过最小化近红外在线监测的可变性,这些发现被证明对优化压实过程的实验设置至关重要。

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