CEIT-Basque Research and Technology Alliance (BRTA), Manuel Lardizabal 15, Donostia, San Sebastián 20018, Spain.
Universidad de Navarra, Tecnun Escuela de Ingenieros, Manuel Lardizabal 13, Donostia, San Sebastián 20018, Spain.
Water Res. 2021 Jul 15;200:117242. doi: 10.1016/j.watres.2021.117242. Epub 2021 May 13.
The effect of mixing in the modelling of processes based on mass transfer phenomena is commonly ignored in wastewater treatment industry. In this contribution, the effect of the average shear rate in the nucleation and growth rates of struvite is analyzed by combining experimental data with simulation results obtained with a previously presented mass-based discretized population balance model. According to the obtained results, the effect of the average shear rate is identifiable for the selected data and mechanisms. Therefore, it should be considered when a detailed modelling of the process is needed. Consequently, in this contribution, the average shear rate has been decoupled from the kinetic constants. In addition, kinetic rates where it is explicitly included as a power law function have been proposed. The exponents in these power law functions for the primary homogeneous nucleation and growth are 1.3 and 0.3, respectively. Considering shear rate effects allowed to see in the simulation outputs experimentally observed effects: a faster pH decay and smaller particle distribution for increasing mixing intensities.
在基于传质现象的过程建模中,混合的影响在废水处理行业中通常被忽略。在本研究中,通过将实验数据与之前提出的基于质量离散化的人口平衡模型的模拟结果相结合,分析了在鸟粪石成核和生长速率中平均剪切速率的影响。根据所得结果,对于所选数据和机制,平均剪切速率的影响是可识别的。因此,在需要对过程进行详细建模时,应考虑该因素。因此,在本研究中,已将平均剪切速率与动力学常数解耦。此外,还提出了将其明确包含在幂律函数中的动力学速率。这些幂律函数中对于初级均相成核和生长的指数分别为 1.3 和 0.3。考虑剪切速率的影响可以在模拟输出中看到实验观察到的效果:随着混合强度的增加,pH 值下降更快,颗粒分布更小。