AbstractWe investigate a flow problem of relevance in bioremediation and develop a mathematical model for transport of contamination by groundwater and the spreading, confinement, and remediation of chemical waste. The model is based on the fluid mass and momentum balance equations and simultaneous transport and consumption of the pollutant (hydrocarbon) and nutrient (oxygen). Particular emphasis is placed on the study of processes involving the full coupling of reaction, transport and mechanical effects. Dimensional analysis and asymptotic reduction are used to simplify the governing equations, which are then solved numerically
Biodegradation, the transformation of organic matter using microorganisms, is a promising technology...
The couplings among fluid flow, advective and dispersive/diffusive transport, and chemical reactions...
The influence of the biocolmation of the geobarrier for organic waste storage on the values of head ...
AbstractWe investigate a flow problem of relevance in bioremediation and develop a mathematical mode...
summary:We study the unsaturated flow of an incompressible liquid carrying a bacterial population th...
A model for metal bioremediation in groundwater is constructed. The mathematical model accounts for ...
The objectives of this research are to develop a comprehensive mathematical model describing in-situ...
In-situ bioremediation is a promising biotechnology for removing aqueous phase contaminants from gro...
A convergent numerical method for modeling in situ biorestoration of contaminated groundwater is out...
The transport and biodegradation of an organic compound (quinoline) were studied in a system of laye...
Transport of bacteria is an important aspect from scientific, industrial and environmental point of ...
The aim of this work is to show a computational modelling of the contaminant transport with biodegr...
Abstract The incorporation of microbial processes into reactive transport models has generally proce...
'Dynamic microbial attachment/detachment occurs in subsurface systems in response to changing enviro...
This thesis relates to the mathematical modelling of biofilm in two primary areas: biofilm growth, a...
Biodegradation, the transformation of organic matter using microorganisms, is a promising technology...
The couplings among fluid flow, advective and dispersive/diffusive transport, and chemical reactions...
The influence of the biocolmation of the geobarrier for organic waste storage on the values of head ...
AbstractWe investigate a flow problem of relevance in bioremediation and develop a mathematical mode...
summary:We study the unsaturated flow of an incompressible liquid carrying a bacterial population th...
A model for metal bioremediation in groundwater is constructed. The mathematical model accounts for ...
The objectives of this research are to develop a comprehensive mathematical model describing in-situ...
In-situ bioremediation is a promising biotechnology for removing aqueous phase contaminants from gro...
A convergent numerical method for modeling in situ biorestoration of contaminated groundwater is out...
The transport and biodegradation of an organic compound (quinoline) were studied in a system of laye...
Transport of bacteria is an important aspect from scientific, industrial and environmental point of ...
The aim of this work is to show a computational modelling of the contaminant transport with biodegr...
Abstract The incorporation of microbial processes into reactive transport models has generally proce...
'Dynamic microbial attachment/detachment occurs in subsurface systems in response to changing enviro...
This thesis relates to the mathematical modelling of biofilm in two primary areas: biofilm growth, a...
Biodegradation, the transformation of organic matter using microorganisms, is a promising technology...
The couplings among fluid flow, advective and dispersive/diffusive transport, and chemical reactions...
The influence of the biocolmation of the geobarrier for organic waste storage on the values of head ...