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A method of characteristics for solving population balance equations (PBE) describing the adsorption of impurities during crystallization processes

机译:一种解决人口平衡方程(PBE)的特征方法,该方程描述了结晶过程中杂质的吸附

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摘要

Possible hindering effects of impurities on the crystal growth were shown to take place because of the adsorption of impurity species on the crystal surface. Transient features of this adsorption were observed, such that the growth of a given crystal does not depend on supersaturation only, but also on the time a given particle spent in contact with impurities present in the mother liquor. Meanwhile, few kinetic models describe the effect of impurities on the growth of crystals in solution, and published models are usually derived from data obtained, thanks to specific experiments based on the evaluation of the growth rate of single crystals. Such models are obviously questionable because, in the industrial practice, distributed properties of crystals are actually involved. Considering the "time of contamination" of particles as a new internal variable is thus made necessary. This is the reason why a specific PBE resolution algorithm is presented in this paper. The numerical scheme for the resolution of PBEs is based on the method of characteristics and shown to allow fast and accurate simulation of transient features of the crystal size distribution in the particular case when the growth or nucleation rates are assumed to exhibit unsteady-state dynamics. The algorithm is finally used to simulate the isothermal desupersaturation crystallization of citric acid in water
机译:由于杂质在晶体表面的吸附,显示出杂质对晶体生长的可能阻碍作用。观察到这种吸附的瞬时特征,使得给定晶体的生长不仅取决于过饱和,而且还取决于给定颗粒与母液中存在的杂质接触所花费的时间。同时,很少有动力学模型描述杂质对溶液中晶体生长的影响,而公开的模型通常是从​​获得的数据中得出的,这要归功于基于评估单晶生长速率的特定实验。这种模型显然是有问题的,因为在工业实践中,实际上涉及晶体的分布特性。因此,有必要将颗粒的“污染时间”视为新的内部变量。这就是为什么本文提出一种特定的PBE解析算法的原因。用于PBE解析的数值方案基于特征方法,显示出可以在特定情况下(假设增长或成核速率表现出非稳态动态)快速准确地模拟晶体尺寸分布的瞬态特征。该算法最终用于模拟柠檬酸在水中的等温去饱和度结晶

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