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Effect of Supersaturation Control and Heterogeneous Nucleation on Porous Membrane Surfaces in the Crystallization of L-Glutamic Acid Polymorphs

机译:L-谷氨酸多晶型物结晶中过饱和度控制和非均相成核对多孔膜表面的影响

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This paper describes the crystallization Of L-glutamic acid polymorphs in both quiescent and forced solution flow membrane crystallizers. The beta polymorph was selectively obtained in static conditions, while the alpha form was preferentially grown in dynamic configuration, depending on the rate of solvent removal. According to concepts of the classical nucleation theory, the nucleation rate of the two polymorphs alpha and beta have been calculated taking into account the quiescent/forced Solution fluid dynamics regime and the homogeneous/heterogeneous nucleation activation mechanism. By this approach, the number-based polymorph fraction a, which is considered as an indication of the chance for a specific polymorphs to nucleate, was calculated. On these bases, the effect of supersaturation control and heterogeneous nucleation on the porous membrane surface was analyzed. Theoretical calculations have been compared with the experimental polymorphic Outcome of the crystallization Of L-glutamic acid (LGA) and an appropriate crystallization mechanism, for the different operative environments, has been formulated. Although it is obvious, classical theory was a helpful tool in describing experimental results obtained in the membrane-based equipment.
机译:本文描述了静态和强制溶液流动膜结晶器中L-谷氨酸多晶型物的结晶。 β多晶型物是在静态条件下选择性获得的,而α形式则优先以动态构型生长,具体取决于溶剂去除的速率。根据经典成核理论的概念,已考​​虑静态/强迫溶液流体动力学机制和均相/异相成核激活机制,计算了两种多晶型物α和β的成核速率。通过这种方法,计算了基于数字的多晶型物分数a,该分数被认为是特定多晶型物成核的机会的指示。在这些基础上,分析了过饱和控制和异质成核对多孔膜表面的影响。理论计算已与L-谷氨酸(LGA)结晶的实验多态结果进行了比较,并针对不同的操作环境制定了适当的结晶机理。尽管很明显,但是经典理论是描述基于膜的设备获得的实验结果的有用工具。

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