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Real time monitoring of biofilm development under flow conditions in porous media
Authors:Ali Bozorg  Ian D Gates
Institution:Department of Chemical and Petroleum Engineering , Schulich School of Engineering, University of Calgary , 2500 University Drive NW, Calgary , Alberta , T2N 1N4 , Canada
Abstract:Biofilm growth can impact the effectiveness of industrial processes that involve porous media. To better understand and characterize how biofilms develop and affect hydraulic properties in porous media, both spatial and temporal development of biofilms under flow conditions was investigated in a translucent porous medium by using Pseudomonas fluorescens HK44, a bacterial strain genetically engineered to luminesce in the presence of an induction agent. Real-time visualization of luminescent biofilm growth patterns under constant pressure conditions was captured using a CCD camera. Images obtained over 8 days revealed that variations in bioluminescence intensity could be correlated to biofilm cell density and hydraulic conductivity. These results were used to develop a real-time imaging method to study the dynamic behavior of biofilm evolution in a porous medium, thereby providing a new tool to investigate the impact of biological fouling in porous media under flow conditions.
Keywords:biofilm  bioluminescence  porous medium  biofouling  hydraulic conductivity  imaging
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