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Combining ATR-FTIR and FBRM for feedback on crystal size

机译:结合ATR-FTIR和FBRM获得晶体尺寸的反馈

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Crystallization operations are frequently used in a number of industries, in particular in the production of fine chemicals. However, stochastic and nonlinear crystallization kinetics often makes it difficult to determine appropriate operating procedures for producing the desired products. This has motivated the development of online measurement tools and the pursuit of feedback control strategies that can adapt to the observed kinetics and produce consistent products. One important crystal property that often must be controlled is the crystal size distribution. Although a number of feedback control schemes have been proposed to indirectly control the size of crystals, these strategies suffer from the lack of direct feedback on the crystal size during operations. Here we propose the simultaneous use of focused-beam reflectance measurements (FBRM) and attenuated total-reflectance Fourier-transform infrared absorbance (ATR-FTIR) measurements to obtain an online measure of average crystal size: the mass-per-count. In this paper, we give experimental results that indicate a strong correlation between the proposed mass-per-count measure and the average crystal size. Furthermore, we demonstrate the utility of this online measure for determining the effects of certain operations on the evolution of average crystal size. Finally, we use this measure to understand the effects of prevailing feedback strategies-known as supersaturation control and direct nucleation control-and, in doing so, elucidate a feedback control strategy that combines these techniques to produce large crystals more efficiently.
机译:结晶操作经常用于许多行业,特别是在精细化学品的生产中。然而,随机和非线性结晶动力学常常使得难以确定用于生产所需产物的合适的操作程序。这激励了在线测量工具的发展以及对反馈控制策略的追求,这些策略可以适应所观察到的动力学并产生一致的产品。通常必须控制的一项重要晶体特性是晶体尺寸分布。尽管已经提出了许多反馈控制方案来间接控制晶体的尺寸,但是这些策略在操作过程中缺乏对晶体尺寸的直接反馈。在这里,我们建议同时使用聚焦光束反射率测量(FBRM)和衰减全反射傅立叶变换红外吸收率(ATR-FTIR)测量,以获取平均晶体尺寸的在线测量值:单位质量。在本文中,我们给出的实验结果表明,建议的每质量测量值与平均晶体尺寸之间存在很强的相关性。此外,我们证明了这种在线测量方法在确定某些操作对平均晶体尺寸演变的影响方面的实用性。最后,我们使用这种方法来了解流行的反馈策略(称为过饱和控制和直接成核控制)的效果,并在此过程中阐明一种结合了这些技术以更有效地生产大型晶体的反馈控制策略。

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