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PMID: 36455631 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Separate effect of turbulent pulsation on internal mass transfer in porous biofilms.

Environmental research ·Vol. 217 ·2023-00-15 ·页码 114972

Huang H, Zeng S, Luo C, Long T

Abstract

Turbulence is considered to be the result of coupled time-averaged and pulsating velocities, making it difficult to distinguish the respective effects, and the quantitative effect of turbulent pulsation alone on mass transfer within biofilms has not been discussed in the literature. In this study, we constructed a special oscillating grid biofilm reactor combining Particle Image Velocimetry (PIV) measurements and Computational Fluid Dynamics (CFD) simulations to achieve nearly isotropic turbulence in a designed ambient without time-averaged velocity and shear stress. Subsequently, velocity and contaminant concentration distributions were obtained by solving a mass transfer model with a k-ε turbulence model, combined with measurements of biofilm structure parameters. The results showed that the increase in turbulent pulsation intensity led to a significant stratification of the percolation velocity gradient in biofilms, which enhanced convective mass transfer. The changes of biofilm density and porosity under turbulent pulsation were more strongly correlated with convective mass transfer. When the turbulent intensity (q) increased to 2.50 cm s-1, the removal rate reached the highest value of 96.93%, accelerating the migration of contaminant concentration and the diffusive mass transfer effect was obvious. In addition, the trend of biofilm thickness under turbulent pulsation was consistent with the change of contaminant concentration distribution, and the correlation between them was greater. In summary, at q of 2.50 cm s-1, there was a positive effect on both convection and diffusion mechanisms in biofilms, and the contaminant removal rate and biofilm thickness reached the maximum, which was the recommended turbulent pulsation conditions.

Keywords
Biofilm Computational fluid dynamics Mass transfer Particle image velocimetry Turbulent pulsation
MeSH 主题词
Porosity Biofilms Diffusion Hydrodynamics Rheology
作者与单位
共 4 位作者,点击展开单位 / ORCID
Huang Haozhe
College of Environment and Ecology, Chongqing University, 400045, Chongqing, PR China.
Zeng Shi
College of Environment and Ecology, Chongqing University, 400045, Chongqing, PR China.
Luo Chao
College of Environment and Ecology, Chongqing University, 400045, Chongqing, PR China.
Long Tianyu
College of Environment and Ecology, Chongqing University, 400045, Chongqing, PR China. Electronic address: [email protected].
Article Info
Journal
Environmental research
Abbr.
Environ Res
ISSN
1096-0953
Corresponding email
Published
2023-00-15
电子出版
2022-00-29
页码
114972
Language
English
Country/Region
Netherlands
NLM ID
0147621
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