Mandelic Acid Single-Crystal Growth: Experiments VS Numerical Simulations

Authors

  • Q. Tan
  • S.A. Hosseini
  • A. Seidel-Morgenstern
  • D. Thévenin
  • H. Lorenz

DOI:

https://doi.org/10.4208/cicp.OA-2022-0035

Keywords:

Mandelic acid, phase-field model, lattice Boltzmann method, ventilation effect.

Abstract

Mandelic acid is an enantiomer of interest in many areas, in particular for the pharmaceutical industry. One of the approaches to produce enantiopure mandelic acid is through crystallization from an aqueous solution. We propose in this study a numerical tool based on lattice Boltzmann simulations to model crystallization dynamics of (S)-mandelic acid. The solver is first validated against experimental data. It is then used to perform parametric studies concerning the effects of important parameters such as supersaturation and seed size on the growth rate. It is finally extended to investigate the impact of forced convection on the crystal habits. Based on there parametric studies, a modification of the reactor geometry is proposed that should reduce the observed deviations from symmetrical growth with a five-fold habit.

Published

2023-02-20

Abstract View

  • 44634

Pdf View

  • 3652

Issue

Section

Articles

How to Cite

Mandelic Acid Single-Crystal Growth: Experiments VS Numerical Simulations. (2023). Communications in Computational Physics, 33(1), 77-100. https://doi.org/10.4208/cicp.OA-2022-0035