Dissimilatory iron-reducing bacteria (DIRB) play an important role in regulating the aqueous geochemistry of iron and other metals in anaerobic, non-sulfidogenic groundwater environments; however, little work has directly assessed the cell surface electrochemistry of DIRB, or the nature of the interfacial environment around individual cells. The electrochemical properties of particulate solids are often inferred from titrations in which net surface charge is determined, assuming electroneutrality, as the difference between known added amounts of acid and base and measured proton concentration. The resultant titration curve can then be fit to a speciation model for the system to determine pKa values and site densities of reactive surface sit...
The groundwater surface water interface (GSI) is a transition zone with biogeochemical properties de...
The groundwater surface water interface (GSI) is a transition zone with biogeochemical properties de...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
The overall purpose of the project is to explore and quantify the processes that control the formati...
Radionuclide and heavy metal contaminants at DOE sites pose immediate and long-term environmental pr...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Dissimilatory iron reduction (DIR) is significant to the biogeochemical cycling of iron, carbon and ...
Dissimilatory iron reduction (DIR) is significant to the biogeochemical cycling of iron, carbon and ...
International audienceDissimilatory iron reducing bacteria (IRB) are strongly involved in iron cycli...
The overall purpose of the project is to explore and quantify the processes that control the formati...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
In the current study we aimed to determine how the cell surface polymers, such as lipopolysaccharide...
The groundwater surface water interface (GSI) is a transition zone with biogeochemical properties de...
The groundwater surface water interface (GSI) is a transition zone with biogeochemical properties de...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...
The overall purpose of the project is to explore and quantify the processes that control the formati...
Radionuclide and heavy metal contaminants at DOE sites pose immediate and long-term environmental pr...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
International audienceIron-reducing bacteria (IRB) are strongly involved in Fe cycling in surface en...
Dissimilatory iron reduction (DIR) is significant to the biogeochemical cycling of iron, carbon and ...
Dissimilatory iron reduction (DIR) is significant to the biogeochemical cycling of iron, carbon and ...
International audienceDissimilatory iron reducing bacteria (IRB) are strongly involved in iron cycli...
The overall purpose of the project is to explore and quantify the processes that control the formati...
Acid Mine Drainage (AMD) is a consequence of mining activity; it results from bacterial and chemical...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
In the current study we aimed to determine how the cell surface polymers, such as lipopolysaccharide...
The groundwater surface water interface (GSI) is a transition zone with biogeochemical properties de...
The groundwater surface water interface (GSI) is a transition zone with biogeochemical properties de...
In many soils, sediments and groundwaters, ferric iron is a major potential electron acceptor for th...