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Continuously seeded, continuously operated tubular crystallizer for the production of active pharmaceutical ingredients

机译:连续播种,连续运行的管状结晶器,用于生产活性药物成分

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摘要

A continuously operated tubular crystallizer system with an inner diameter of 2.0 mm has been successfully operated. It allows the crystallization of active pharmaceutical ingredients (APIs) under controlled conditions. Acetylsalicylic acid (ASA) which was crystallized from ethanol (EtOH) was used as the model substance. An ethanolic suspension of ASA-seeds was fed into the tubular crystallizer system, where it was mixed with a slightly undersaturated ASA-EtOH solution that was kept at an elevated temperature in its storage vessel. Supersaturation was created via cooling and the seeds grew to form the product crystals. This work mainly focuses on the proof-of-concept and on the impact of the flow rates on the product crystals and the crystal size distribution (CSD). All other parameters including concentrations, temperatures, and loading of seeds were kept constant. Higher flow velocities generally resulted in reduced number and volume mean diameters, due to reduced tendency of agglomeration and decreased time for crystal growth due to shorter residence times of the suspension in the tube. Generally, all experiments unmistakably led to shifting of volume density distributions toward significantly larger values for product crystals in comparison to the seeds and were capable of yielding product masses in a g/min scale.
机译:内径为2.0毫米的连续运行的管式结晶器系统已成功运行。它允许在受控条件下结晶活性药物成分(API)。从乙醇(EtOH)中结晶出来的乙酰水杨酸(ASA)用作模型物质。将ASA种子的乙醇悬浮液加入到管式结晶器系统中,在其中与略微不饱和的ASA-EtOH溶液混合,该溶液在其储存容器中保持高温。通过冷却产生过饱和,并且晶种生长形成产物晶体。这项工作主要集中在概念验证上,以及流速对产品晶体和晶体尺寸分布(CSD)的影响。所有其他参数(包括浓度,温度和种子负荷)保持恒定。较高的流速通常会导致数量和体积平均直径的减小,这是因为附聚的趋势降低,并且由于悬浮液在管中的停留时间较短,从而缩短了晶体生长时间。通常,所有实验无疑会导致与种子相比,产品晶体的体积密度分布向明显更大的值移动,并且能够产生g / min规模的产品质量。

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