在线数字全息测量结晶过程中微粒的尺寸和形状

Taslima Khanam, E. Darakis, A. Rajendran, V. Kariwala, A. Asundi, T. Naughton
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引用次数: 20

摘要

结晶是一种广泛使用的化学过程,在制药工业中得到了应用。在工业结晶过程中,不仅生产纯晶体很重要,而且控制晶体的形状和大小也很重要,因为它们影响下游工艺的效率和药物的溶解性。控制算法的有效性取决于这些关键特性的在线实时信息的可用性。在本文中,我们研究使用无透镜的在线数字全息显微镜的尺寸和形状测量的结晶过程。为此,我们使用液体悬浮液中已知尺寸的非结晶球形微粒和碳纤维作为测试系统。我们提出了一种从实验记录的数字全息图中提取微粒群大小和形状信息的算法。用该方法得到的测量结果与已知的颗粒尺寸和形状吻合良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On-line digital holographic measurement of size and shape of microparticles for crystallization processes
Crystallization is a widely used chemical process that finds applications in pharmaceutical industries. In an industrial crystallization process, it is not only important to produce pure crystals but also to control the shape and size of the crystals, as they affect the efficiency of downstream processes and the dissolution property of the drug. The effectiveness of control algorithms depend on the availability of on-line, real-time information about these critical properties. In this paper, we investigate the use of lens-less in-line digital holographic microscopy for size and shape measurements for crystallization processes. For this purpose, we use non-crystalline spherical microparticles and carbon fibers with known sizes present in a liquid suspension as test systems. We propose an algorithm to extract size and shape information for a population of microparticles from the experimentally recorded digital holograms. The measurements obtained from the proposed method show good agreement with the corresponding known size and shape of the particles.
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