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MINIATURIZED TUBULAR COOLING CRYSTALLIZER WITH SOLID-LIQUID FLOW FOR PROCESS DEVELOPMENT

机译:用于过程开发的具有固态流的微型管状冷却结晶器

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Production of fine chemicals and pharmaceuticals often includes solid-liquid suspension flow. For continuous cooling a tubular crystallizer was designed based on the coiled flow inverter (CFI) concept, providing a narrow residence time distribution (RTD) of the liquid phase. Counter-current cooling allows for a smooth adjustment of the axial temperature profile. Successful operation of up to 50 g min~(-1) in a prototype with 4 mm inner diameter was scaled down to a tube-in-tube CFI crystallizer (CFIC) with an inner diameter of 1.6 mm and varying length from 7.8 to 54.6 m. This leads to a significantly lower consumption of chemicals in process development with lower total mass flow rates of 15 - 20 g min~(-1). Due to modular design, mean residence time (3.8 to 6.9 min) and mean cooling rate (0.6 to 1.4 K·min~(-1)) were varied at constant mass flow rate. Crystallization growth rate and yield are analyzed with the l-alanine/water test system and seed crystals of 125 - 180 μm.
机译:精细化学品和药品的生产通常包括固液悬浮流。为了连续冷却,基于盘绕流逆变器(CFI)的概念设计了管状结晶器,提供了窄的液相停留时间分布(RTD)。逆流冷却可平滑调整轴向温度曲线。在一个内径为4 mm的原型中成功运行高达50 g min〜(-1)的过程被缩小为一个内径为1.6 mm,长度从7.8到54.6的管内CFI结晶器(CFIC)。米这导致工艺开发中的化学品消耗大大降低,总质量流量降低了15-20 g min〜(-1)。由于采用模块化设计,在恒定质量流量下,平均停留时间(3.8至6.9分钟)和平均冷却速度(0.6至1.4 K·min〜(-1))有所变化。用l-丙氨酸/水测试系统和125-180μm的晶种分析结晶生长速率和产率。

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