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Morphological population balance modelling of the effect of crystallisation environment on the evolution of crystal size and shape of para-aminobenzoic acid

机译:形态人口平衡模拟结晶环境对氨基苯甲酸晶体尺寸和形状演化的影响

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摘要

A current morphological population balance (MPB) modelling methodology, which integrates crystal morphology, facet growth kinetics with multi-dimensional population balance, is overviewed and demonstrated, hence providing an attractive approach for modelling crystallisation processes. MPB modelling is applied to simulate the batch crystallisation of the alpha-form of para-aminobenzoic acid from ethanolic solutions as a function of the crystallisation environment including cooling rate, seeding temperature and seed conditions (loading, size and shape). The evolution of crystal shape/size and their distributions revealed that higher loading led to smaller and less needle-like crystals with similar yields, hence potentially being an important parameter for process control. Examination of the development of the fracture surface for broken seeds, mimicking the seed conditions after milling in practice in the simulated processes, demonstrated that these faces grew fast and then rapidly disappeared from the external crystal morphology. Restriction and challenges inherent in the current model are also highlighted. (C) 2019 Elsevier Ltd. All rights reserved.
机译:目前的形态人口平衡(MPB)建模方法,其整合了晶体形态,具有多维人口平衡的平面生长动力学,并证明了一种用于建模结晶过程的吸引力方法。应用MPB建模以模拟来自乙醇溶液的α-氨基苯甲酸的α-形式的批次结晶,作为结晶环境的函数,包括冷却速率,播种温度和种子条件(装载,尺寸和形状)。晶体形状/尺寸及其分布的演变揭示了更高的载荷导致具有相似产量的较小的针状晶体,因此可能是过程控制的重要参数。检查破碎种子的骨折表面的开发,在模拟过程中实践中铣削后模仿种子条件,表明这些面很快,然后从外部晶体形态快速消失。当前模型中固有的限制和挑战也突出显示。 (c)2019 Elsevier Ltd.保留所有权利。

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