This work presents an integrated mathematical model able to simulate the physical, chemical, and biological processes prevailing in a sulfate-reducing biofilm under dynamic conditions. The model includes sulfate reduction by complete and incomplete sulfate-reducing bacteria (SRB); lactate removal by sulfate reduction and by acetogenic bacteria and acetate consumption via methanogenesis. Numerical integration based on the method of characteristics has been developed. The major problem of sulfate-reducing fixed-growth reactors is the formation of undesired bacterial species, which compete for space and substrate within the biofilm with SRB. The effect of COD/SO2 4 ratio on the eactor performances in terms of bacterial species distribution a...
The microbial population structure and function of natural anaerobic communities maintained in lab-s...
A 1-D mathematical model for analysis and prediction of microbial colonization of anaerobic multispe...
Sulphate can be removed from wastewater by means of biological anaerobic reduction to sulphide. The ...
This work presents an integrated mathematical model able to simulate the physical, chemical, and bio...
Increasing anthropogenic activity has contributed to local imbalances in the natural sulfur cycle, l...
The paper presents a mathematical model able to simulate the physical, chemical and biological proce...
AbstractThis paper presents a mathematical model able to simulate the physical, chemical and biologi...
This paper presents a mathematical model able to simulate the physical, chemical and biological proc...
A 1D mathematical model for analysis and prediction of microbial interactions within multispecies bi...
This paper presents a mathematical model able to simulate under dynamic conditions the physical, che...
Sulfate-reducing bacterial (SRB) biofilms were grown in a flowcell in which the biofilm was grown on...
A deterministic one-dimensional reaction diffusion model was constructed to simulate benthic stratif...
Bacterial biofilms are organized communities composed of millions of microorganisms that accumulate ...
The microbial population structure and function of natural anaerobic communities maintained in lab-s...
A 1-D mathematical model for analysis and prediction of microbial colonization of anaerobic multispe...
Sulphate can be removed from wastewater by means of biological anaerobic reduction to sulphide. The ...
This work presents an integrated mathematical model able to simulate the physical, chemical, and bio...
Increasing anthropogenic activity has contributed to local imbalances in the natural sulfur cycle, l...
The paper presents a mathematical model able to simulate the physical, chemical and biological proce...
AbstractThis paper presents a mathematical model able to simulate the physical, chemical and biologi...
This paper presents a mathematical model able to simulate the physical, chemical and biological proc...
A 1D mathematical model for analysis and prediction of microbial interactions within multispecies bi...
This paper presents a mathematical model able to simulate under dynamic conditions the physical, che...
Sulfate-reducing bacterial (SRB) biofilms were grown in a flowcell in which the biofilm was grown on...
A deterministic one-dimensional reaction diffusion model was constructed to simulate benthic stratif...
Bacterial biofilms are organized communities composed of millions of microorganisms that accumulate ...
The microbial population structure and function of natural anaerobic communities maintained in lab-s...
A 1-D mathematical model for analysis and prediction of microbial colonization of anaerobic multispe...
Sulphate can be removed from wastewater by means of biological anaerobic reduction to sulphide. The ...