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Population Balance Modelling of Zirconia Nanoparticles in Supercritical Water Hydrothermal Synthesis

机译:超临界水热合成中氧化锆纳米粒子的种群平衡模型

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摘要

Like any other precipitation process, in supercritical water hydrothermal synthesis (SWHS), the need to improve product quality and minimize production cost requires understanding and optimization of Particle Size Distribution (PSD). In this work, using Population Balance Equation (PBE) containing nucleation and growth terms, the reactive precipitation of zirconia nanoparticles prepared by SWHS in the batch reactor was modeled. An optimization method using genetic algorithm function in MATLAB environment was developed to find simultaneously the kinetic parameters of nucleation and crystal growth rates, used for predicting PSD in PBE. The methodology developed evaluated kinetic parameters at comparable order of magnitudes to those presented in the literature, indicating a reasonable validation of the modeling method adopted. PSD results, however, showed a weak convergence of experimental and those predicted, suggesting that here, aggregation most likely played a considerable role in the PBE modeling of SWHS preparation of the zirconia nanoparticles.
机译:像任何其他沉淀过程一样,在超临界水水热合成(SWHS)中,需要提高产品质量并最小化生产成本,这需要了解和优化粒度分布(PSD)。在这项工作中,使用包含成核和生长项的人口平衡方程(PBE),对由SWHS制备的氧化锆纳米颗粒在间歇反应器中的反应性沉淀进行了建模。开发了一种在MATLAB环境下使用遗传算法函数的优化方法,以同时找到成核动力学参数和晶体生长速率,用于预测PBE中的PSD。该方法开发的动力学参数与文献中介绍的动力学参数具有相似的数量级,这表明所采用的建模方法得到了合理的验证。然而,PSD结果显示出实验性和预测性的收敛性较弱,这表明,聚集最有可能在氧化锆纳米粒子的SWHS制备的PBE建模中发挥了重要作用。

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