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Process Analytical Technology: Application to Particle Sizing in Spray Drying

机译:过程分析技术:在喷雾干燥中的粒度测定中的应用

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摘要

The purpose of this research was to explore the possibility of employing PAT for particle sizing during spray drying with the use of an in-line and at-line laser diffraction system. Microspheres were made using maltodextrin and modified starch as wall material and size results obtained using PAT compared with those determined with off-line laser diffraction and light microscopy. Median particle size results were highest for in-line laser diffraction, followed by at-line and off-line laser diffraction and finally light microscopy. This was due to the presence of agglomerates which were measured as discrete microspheres in the in-line set-up. At-line and off-line laser diffraction gave results more closely correlated with individual microsphere sizes due to agglomerate breakdown during the measurement process. Light microscopy allowed direct observation of the particle morphology, however, its use for particle sizing was tedious and sample size was much smaller compared to laser diffraction. Although PAT was found to be an efficient and convenient tool, careful data interpretation was needed taking into account the cohesiveness of the material measured. The at-line set-up appeared to be more suitable in this particular application.
机译:这项研究的目的是探索使用在线和在线激光衍射系统在喷雾干燥过程中将PAT用于颗粒上浆的可能性。用麦芽糖糊精和改性淀粉作为壁材料制成微球,与离线激光衍射和光学显微镜测定的结果相比,使用PAT获得的粒径结果。在线激光衍射的中值粒径结果最高,然后是在线和离线激光衍射,最后是光学显微镜。这是由于存在聚集体,这些聚集体在在线设置中被测量为离散的微球。由于在测量过程中团聚体分解,在线和离线激光衍射得出的结果与单个微球尺寸更紧密相关。光学显微镜可以直接观察颗粒的形态,但是,与激光衍射相比,其用于颗粒筛分的过程很繁琐,并且样品量要小得多。尽管发现PAT是一种有效且方便的工具,但考虑到所测材料的内聚性,需要仔细的数据解释。在线设置似乎更适合此特定应用程序。

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