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Monitoring phase transitions of crystals in-line

机译:在线监测晶体的相变

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摘要

An online control in production of crystalline substances with respect to their morphology or a solvent mediated phase transfer is of key importance in many industries. Here two rather new PAT tools are tested. Monitoring of solvent mediated phase transition by ultrasound (single frequency) and 3D optical reflectance measurement (ORM) (advanced particle analyzing system (APAS)) is evaluated based on case studies with sulfathiazole, magnesium sulfate and di-sodium tetraborate. The achieved results by the in-line PAT tools are proven by optical microscopy. The different solvates and polymorphic forms could be detected by the use of ultrasound (single frequency) and 3D ORM (APAS) techniques, however, the application of these techniques does not work in all cases, but always at least one is working. There are limitations with respect to the nature of the examined substances. (C) 2015 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:关于结晶物质的形态或溶剂介导的相转移的在线生产控制在许多行业中至关重要。这里测试了两个相当新的PAT工具。基于对磺胺噻唑,硫酸镁和四硼酸钠的案例研究,评估了通过超声(单频)和3D光反射率测量(ORM)(高级颗粒分析系统(APAS))对溶剂介导的相变的监测。在线PAT工具获得的结果已通过光学显微镜证明。可以通过使用超声(单频)和3D ORM(APAS)技术来检测不同的溶剂化物和多晶型物,但是,这些技术的应用并非在所有情况下都有效,但始终至少有一种有效。关于所检查物质的性质存在限制。 (C)2015年日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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