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采用计算层析成像和计算流体力学对同时处理甲苯、甲醛和苯并[a]芘蒸气混合物的生物过滤器进行模拟。

Computational tomography and CFD simulation of a biofilter treating a toluene, formaldehyde and benzo[α]pyrene vapor mixture.

机构信息

Green Technology Research Group, Facultad de Ingeniería y Ciencias Aplicadas, Universidad de los Andes, Chile.

Green Technology Research Group, Facultad de Ingeniería y Ciencias Aplicadas, Universidad de los Andes, Chile.

出版信息

Chemosphere. 2020 Feb;240:124924. doi: 10.1016/j.chemosphere.2019.124924. Epub 2019 Sep 25.

Abstract

In this work, a 3D computational tomography (CT) of the packing material of a laboratory column biofilter is used to model airflow containing three contaminants. The degradation equations for toluene, formaldehyde and benzo[α]pyrene (BaP), were one-way coupled to the CFD model. Physical validation of the model was attained by comparing pressure drops with experimental measurement, while experimental elimination capacities for the pollutants were used to validate the biodegradation kinetics. The validated model was used to assess the existence of channeling and to predict the impact of the three-dimensional porous geometry on the mass transfer of the contaminants in the gas phase. Our results indicate that a physically meaningful simulation can be obtained using the techniques and approach presented in this work, without the need of performing experiments to obtain macroscopic parameters such as gas-phase axial and radial dispersion coefficients and porosities.

摘要

在这项工作中,使用实验室柱状生物滤池包装材料的三维计算层析成像(CT)来模拟含有三种污染物的气流。甲苯、甲醛和苯并[a]芘(BaP)的降解方程被单向耦合到 CFD 模型中。通过将压降与实验测量进行比较,实现了模型的物理验证,而污染物的实验去除能力则用于验证生物降解动力学。使用验证后的模型评估了通道形成的存在,并预测了三维多孔几何形状对气相中污染物传质的影响。我们的结果表明,可以使用本工作中提出的技术和方法获得具有物理意义的模拟,而无需进行实验来获得宏观参数,如气相轴向和径向扩散系数和孔隙率。

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