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Efficient solution of a batch crystallization model with fines dissolution

机译:细粉溶解的批量结晶模型的有效解决方案

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摘要

In this paper, an efficient and accurate numerical method is proposed for solving a batch crystallization model with fines dissolution. The dissolution of small crystals (fines dissolution) is useful for improving the quality of a product. This effectively shifts the crystal size distribution (CSD) towards larger crystal sizes and often makes the distribution narrower. The growth rate can be size-dependent and a time-delay in the dissolution unit is also incorporated in the model. The proposed method has two parts. In the first part, a coupled system of ordinary differential equations (ODEs) for moments and solute mass is numerically solved in the time domain of interest. These discrete values are used to get growth and nucleation rates in the same time domain. In the second part, the discrete growth and nucleation rates along with the initial CSD are used to construct the final CSD. The analytical expression for CSD is obtained by applying the method of characteristics and Duhamel's principle on the given population balance model (PBM). A Gaussian quadrature method, based on orthogonal polynomials, is used for approximating integrals in the ODE-system of moments and solute mass. The efficiency and accuracy of the proposed numerical method is validated by a numerical test problem.
机译:本文提出了一种有效而精确的数值方法来求解具有细粒溶解的批结晶模型。小晶体的溶解(细粒溶解)可用于提高产品质量。这有效地将晶体尺寸分布(CSD)移向更大的晶体尺寸,并且通常使分布变窄。生长速率可能取决于大小,并且溶出度单位中的时间延迟也被纳入模型中。所提出的方法包括两个部分。在第一部分中,在感兴趣的时域中数值求解了矩和溶质的常微分方程(ODE)耦合系统。这些离散值用于获得同一时域中的生长速率和成核速率。在第二部分中,离散的生长和成核速率与初始CSD一起用于构建最终CSD。通过在给定的人口平衡模型(PBM)上应用特征方法和Duhamel原理获得CSD的解析表达式。基于正交多项式的高斯正交方法用于矩量和溶质的ODE系统中的积分近似。通过数值测试问题验证了所提出数值方法的效率和准确性。

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