Real-Time Characterization of Crystal Shape and Size Distribution Based on Moving Window and 3D Imaging in a Stirred Tank

Rui Zhang, Xue-zhong Wang, Yang Zhang, Tao Liu
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引用次数: 1

Abstract

Crystal shape distribution, i.e. the multidimensional size distribution of crystals, is of great importance to their down-stream processing such as in filtration as well as to the end-use properties including the dissolution rate and bioavailability for crystalline pharmaceuticals. Engineering crystal shape and shape distribution requires knowledge about the growth behavior of different crystal facets under varied operational conditions e.g. supersaturations. Measurement of the facet growth rates and growth kinetics of static crystals in a crystallizer without stirring has been reported previously. Here attention is given to study on real-time characterization of the 3D facet growth behavior of crystals in a stirred tank where crystals are constantly moving and rotating. The measurement technique is stereo imaging and the crystal shape reconstruction is based on a stereo imaging camera model. By reference to a case study on potash alum crystallization, it is demonstrated that the crystal size and shape distributions (CSSD) of moving and rotating potash alum crystals in the solution can be reconstructed. The moving window approach was used to correlate 3D face growth kinetics with supersaturation (in the range 0.04 - 0.12) given by an ATR FTIR probe. It revealed that {100} is the fastest growing face, leading to a rapid reduction of its area, while the {111} face has the slowest growth rate, reflected in its area continuously getting larger.
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基于移动窗口和三维成像的搅拌槽晶体形状和尺寸分布实时表征
晶体形状分布,即晶体的多维尺寸分布,对其下游加工(如过滤)以及晶体药物的最终用途特性(如溶出率和生物利用度)非常重要。工程晶体形状和形状分布需要了解不同的晶体面在不同的操作条件下的生长行为,例如过饱和。在没有搅拌的结晶器中测量静态晶体的小面生长速率和生长动力学已经有报道。本文重点研究了晶体在不断运动和旋转的搅拌槽中三维面生长行为的实时表征。测量技术为立体成像,晶体形状重建基于立体成像相机模型。通过对钾明矾结晶的实例研究,证明了可以重构溶液中移动和旋转钾明矾晶体的晶粒尺寸和形状分布(CSSD)。移动窗口方法用于将三维表面生长动力学与ATR FTIR探针给出的过饱和(范围为0.04 - 0.12)相关联。结果表明,{100}是生长最快的面,其面积迅速缩小,{111}面生长速度最慢,其面积不断变大。
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