The demand of iron is increasingly rising nowadays due to the growth of human population. The iron ore reserves are diminishing and this encourages the scientific community to look into the use of secondary sources of iron. When iron occurs with nitrate, Fe(II)-mediated autotrophic denitrification is an alternative biotechnology to simultaneously remove nitrate and recover iron through the formation of Fe(III) precipitates. In the last 20 years, a large number of microbial species have been isolated and observed to be capable of coupling Fe(II) oxidation to denitrification under both mixotrophic and strictly lithotrophic conditions. Within mixotrophic metabolism, acetate is the most effective organic electron donor enhancing denitrification...
The anaerobic oxidation of Fe(II) by subsurface microorganisms is an important part of biogeochemica...
ABSTRACT: This study introduces a newly isolated, genet-ically tractable bacterium (Pseudogulbenkian...
The biogeochemical redox processes of iron can influence iron mineralization, contaminant transforma...
The demand of iron is increasingly rising nowadays due to the growth of human population. The iron o...
This study focuses on the biorecovery of iron and other metals, simultaneously with nitrogen removal...
Nowadays, nitrate represents one of the major contaminants of the hydrosphere, mainly affecting the ...
Redox reactions between iron and nitrogen drive the global biogeochemical cycles of these two elemen...
Nitrate (NO3-) is commonly found in municipal and industrial wastewaters. In mining environments, NO...
Ferrous iron (Fe(II)) oxidation and nitrate (NO3 (-)) reduction are commonly observed in environment...
Microbially driven nitrate-dependent iron (Fe) oxidation (NDFO) in subsurface environments has been ...
Fe(II)-mediated autotrophic denitrification with four different microbial cultures under different p...
The sulphur-based autotrophic denitrification process utilizing Thiobacillus denitrificans was studi...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
The recovery of iron and other heavy metals by the formation of Fe(III) (hydr)oxides is an important...
In order to assess the importance of nitrate-dependent Fe(II) oxidation and its impact on the growth...
The anaerobic oxidation of Fe(II) by subsurface microorganisms is an important part of biogeochemica...
ABSTRACT: This study introduces a newly isolated, genet-ically tractable bacterium (Pseudogulbenkian...
The biogeochemical redox processes of iron can influence iron mineralization, contaminant transforma...
The demand of iron is increasingly rising nowadays due to the growth of human population. The iron o...
This study focuses on the biorecovery of iron and other metals, simultaneously with nitrogen removal...
Nowadays, nitrate represents one of the major contaminants of the hydrosphere, mainly affecting the ...
Redox reactions between iron and nitrogen drive the global biogeochemical cycles of these two elemen...
Nitrate (NO3-) is commonly found in municipal and industrial wastewaters. In mining environments, NO...
Ferrous iron (Fe(II)) oxidation and nitrate (NO3 (-)) reduction are commonly observed in environment...
Microbially driven nitrate-dependent iron (Fe) oxidation (NDFO) in subsurface environments has been ...
Fe(II)-mediated autotrophic denitrification with four different microbial cultures under different p...
The sulphur-based autotrophic denitrification process utilizing Thiobacillus denitrificans was studi...
Autotrophic denitrification coupled to pyrite oxidation is considered a natural nitrate attenuation ...
The recovery of iron and other heavy metals by the formation of Fe(III) (hydr)oxides is an important...
In order to assess the importance of nitrate-dependent Fe(II) oxidation and its impact on the growth...
The anaerobic oxidation of Fe(II) by subsurface microorganisms is an important part of biogeochemica...
ABSTRACT: This study introduces a newly isolated, genet-ically tractable bacterium (Pseudogulbenkian...
The biogeochemical redox processes of iron can influence iron mineralization, contaminant transforma...