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Selective Crystallization of the Metastable alpha-Form of L-Glutamic Acid using Concentration Feedback Control

机译:使用浓度反馈控制对L-谷氨酸的亚稳态α形式进行选择性结晶

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摘要

A systematic methodology is presented for the selective crystallization of the metastable form of a monotropic dimorph, L-glutamic acid, for batch cooling crystallization. Attenuated total reflection-Fourier transform infrared (ATR-FTIR) spectroscopy coupled with chemometrics was used to determine the solute concentration and solubility curves of both alpha- and beta-forms of L-glutamic acid in aqueous solution. The metastable limit associated with secondary nucleation for a seeded system was determined using laser backscattering (focused beam reflectance measurement, FBRM). Batch crystallizations seeded with the metastable a-form crystals following various preset supersaturation profiles were implemented using concentration feedback control which regulated the cooling rate based on the in situ measurement of solute concentration. Batch crystallizations operated at constant relative supersaturation in an appropriate temperature range prevented secondary nucleation of both polymorph types and were successful in selectively growing large metastable crystals with uniform size.
机译:提出了一种系统方法学,用于选择性结晶单向性双晶型物L-谷氨酸的亚稳形式,以进行批量冷却结晶。衰减全反射傅里叶变换红外光谱(ATR-FTIR)结合化学计量学用于确定水溶液中L型谷氨酸的α和β形式的溶质浓度和溶解度曲线。使用激光反向散射(聚焦光束反射率测量,FBRM)确定与种子系统二次成核有关的亚稳态极限。使用浓度反馈控制,根据溶质浓度的原位测量来调节冷却速率,从而实现了按照各种预设的过饱和曲线,用亚稳态a型晶体注入的分批结晶。在适当的温度范围内以恒定的相对过饱和度进行的分批结晶可防止两种多晶型物的二次成核,并成功地选择性生长了尺寸均匀的大亚稳晶体。

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