This work investigates the effect of shear stress and mass transfer on the development of biofilms in a flow cell that mimics industrial piping. The shear stress and maximum flow velocity were estimated by computational fluid dynamics and the external mass transfer coefficient was calculated using empirical correlations for Reynolds numbers ranging from 100 to 10,000. The effect of two flow rates on the development of Escherichia coli biofilms under turbulent flow conditions was assessed and it was observed that biofilm formation was favored at the lowest flow rate. Additionally, estimations of the shear stress and external mass transfer coefficient indicate that both parameters increase with increasing flow rates. Thus, it seems that biofi...
Fluid flow has been shown to be important in influencing biofilm morphology and causing biofilms to ...
The main aim of the project was to study the effect of flow rate (shear stress), under different nu...
[[abstract]]The impact of flow velocity (FV) on the growth dynamics of biofilms and bulk water heter...
This work investigates the effect of flow rate variationon the development of Escherichia coli biofi...
There is growing evidence that individual bacteria sense and respond to changes in mechanical loadin...
The influence of the shear stress (tau(w)) under which biofilms were formed was assessed on their su...
This work investigates the effect of flow rate variation on mass transfer and on the development of ...
There is growing evidence that individual bacteria sense and respond to changes in mechanical loadi...
Bacteria attached to surfaces in biofilms are responsible for the contamination of industrial proces...
Biofilms are found at the inner surfaces of drinking water pipes and, therefore, it is essential to ...
International audienceBacterial communities attached to surfaces under fluid flow represent a widesp...
Hydrodynamic conditions control two interlinked parameters; mass transfer and drag, and will, theref...
AbstractBiofilms are layers of microbial cells growing on an interface and they can form highly comp...
International audienceThe high water recycling ratio used in some industries can cause nutrients to ...
The effect that the hydrodynamic conditions under which biofilms are formed has on their persistence...
Fluid flow has been shown to be important in influencing biofilm morphology and causing biofilms to ...
The main aim of the project was to study the effect of flow rate (shear stress), under different nu...
[[abstract]]The impact of flow velocity (FV) on the growth dynamics of biofilms and bulk water heter...
This work investigates the effect of flow rate variationon the development of Escherichia coli biofi...
There is growing evidence that individual bacteria sense and respond to changes in mechanical loadin...
The influence of the shear stress (tau(w)) under which biofilms were formed was assessed on their su...
This work investigates the effect of flow rate variation on mass transfer and on the development of ...
There is growing evidence that individual bacteria sense and respond to changes in mechanical loadi...
Bacteria attached to surfaces in biofilms are responsible for the contamination of industrial proces...
Biofilms are found at the inner surfaces of drinking water pipes and, therefore, it is essential to ...
International audienceBacterial communities attached to surfaces under fluid flow represent a widesp...
Hydrodynamic conditions control two interlinked parameters; mass transfer and drag, and will, theref...
AbstractBiofilms are layers of microbial cells growing on an interface and they can form highly comp...
International audienceThe high water recycling ratio used in some industries can cause nutrients to ...
The effect that the hydrodynamic conditions under which biofilms are formed has on their persistence...
Fluid flow has been shown to be important in influencing biofilm morphology and causing biofilms to ...
The main aim of the project was to study the effect of flow rate (shear stress), under different nu...
[[abstract]]The impact of flow velocity (FV) on the growth dynamics of biofilms and bulk water heter...