Rapid prototyping of a modular optical flow cell for image-based droplet size measurements in emulsification processes

IF 2 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Journal of Flow Chemistry Pub Date : 2024-03-19 DOI:10.1007/s41981-024-00323-2
Inga Burke, Christina Assies, Norbert Kockmann
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Abstract

Emulsification processes are often found in the process industry and their evaluation is crucial for product quality and safety. Numerous methods exist to analyze critical quality attributes (CQA) such as the droplet sizes and droplet size distribution (DSD) of an emulsification process. During the emulsification process, the optical process accessibility may be limited due to high disperse phase content of liquid-liquid systems. To overcome this challenge, a modular, optical measurement flow cell is presented to widen the application window of optical methods in emulsification processes. In this contribution, the channel geometry is subject of optimization to modify the flow characteristics and produce high optical quality. In terms of rapid prototyping, an iterative optimization procedure via SLA-3D printing was used to increase operability. The results demonstrated that the flow cell resulting from the optimization procedure provides a broad observation window for droplet detection.

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用于乳化过程中基于图像的液滴粒度测量的模块化光学流动池的快速原型开发
乳化过程经常出现在加工工业中,对其进行评估对产品质量和安全至关重要。目前有许多方法可以分析乳化过程中的液滴尺寸和液滴尺寸分布 (DSD) 等关键质量属性 (CQA)。在乳化过程中,由于液-液系统的分散相含量较高,光学过程的可及性可能会受到限制。为了克服这一挑战,我们提出了一种模块化光学测量流动池,以拓宽光学方法在乳化过程中的应用范围。在这一贡献中,对通道几何形状进行了优化,以改变流动特性并产生高光学质量。在快速原型制作方面,采用了 SLA-3D 打印迭代优化程序,以提高可操作性。结果表明,优化程序产生的流动池为液滴检测提供了广阔的观察窗口。
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来源期刊
Journal of Flow Chemistry
Journal of Flow Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
6.40
自引率
3.70%
发文量
29
审稿时长
>12 weeks
期刊介绍: The main focus of the journal is flow chemistry in inorganic, organic, analytical and process chemistry in the academic research as well as in applied research and development in the pharmaceutical, agrochemical, fine-chemical, petro- chemical, fragrance industry.
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