Accumulation of microbial biomass and its influence on porous media flow were investigated under saturated flow conditions. Microfluidic experiments were performed with model organisms, and their accumulation was observed in the pore space and on the sub-pore scale. Time-lapse optical imaging revealed different modes of biomass accumulation through primary colonization, secondary growth, and filtration events, showing the formation of preferential flow pathways in the flooding domain as result of the increasing interstitial velocity. Navier–Stokes–Brinkmann flow simulations were performed on the segmented images—a digital-twin approach—considering locally accumulated biomass as impermeable or permeable based on optical biomass density. By c...
We explore how X-ray computed microtomography can be used to generate highly-resolved 3D biofilm dat...
Physical heterogeneity determines interstitial fluxes in porous media. Nutrients and organic matter ...
Microorganisms settle in diverse partially saturated porous media in the form of biofilms. The alter...
Accumulation of microbial biomass and its influence on porous media flow were investigated under sat...
From laboratory experiments it is known that bacterial biomass is able to influence the hydraulic pr...
The purpose of this study was to understand bacteria profile modification and its applications in su...
Biomass plugging of porous media finds application in enhanced oil recovery and bioremediation. An u...
This is the publisher’s final pdf. The published article is copyrighted by American Geophysical Unio...
Understanding the plugging of porous media with bacteria and their exopolymers (i.e., biomass) is im...
Understanding the plugging of porous media with bacteria and their exopolymers (i.e., biomass) is im...
Biofilm accumulation in porous media can cause pore plugging and change many of the physical propert...
Motivation: Biomineralization refers to microbially induced processes resulting in mineral formation...
Graduation date: 2002Bioremediation in the vadose zone is unpredictable because of poor\ud understan...
Reactive transport models contain terms describing microbiological and hydrological processes that c...
Reactive transport models contain terms describing microbiological and hydrological processes that c...
We explore how X-ray computed microtomography can be used to generate highly-resolved 3D biofilm dat...
Physical heterogeneity determines interstitial fluxes in porous media. Nutrients and organic matter ...
Microorganisms settle in diverse partially saturated porous media in the form of biofilms. The alter...
Accumulation of microbial biomass and its influence on porous media flow were investigated under sat...
From laboratory experiments it is known that bacterial biomass is able to influence the hydraulic pr...
The purpose of this study was to understand bacteria profile modification and its applications in su...
Biomass plugging of porous media finds application in enhanced oil recovery and bioremediation. An u...
This is the publisher’s final pdf. The published article is copyrighted by American Geophysical Unio...
Understanding the plugging of porous media with bacteria and their exopolymers (i.e., biomass) is im...
Understanding the plugging of porous media with bacteria and their exopolymers (i.e., biomass) is im...
Biofilm accumulation in porous media can cause pore plugging and change many of the physical propert...
Motivation: Biomineralization refers to microbially induced processes resulting in mineral formation...
Graduation date: 2002Bioremediation in the vadose zone is unpredictable because of poor\ud understan...
Reactive transport models contain terms describing microbiological and hydrological processes that c...
Reactive transport models contain terms describing microbiological and hydrological processes that c...
We explore how X-ray computed microtomography can be used to generate highly-resolved 3D biofilm dat...
Physical heterogeneity determines interstitial fluxes in porous media. Nutrients and organic matter ...
Microorganisms settle in diverse partially saturated porous media in the form of biofilms. The alter...