International audienceThe reduction of less stable ferric hydroxides and formation of ferrous phases is critical for the fate of phosphorus in anaerobic soils and sediments. The interaction between ferrous iron and phosphate was investigated experimentally during the reduction of synthetic ferrihydrite with natural organic materials as carbon source. Ferrihydrite was readily reduced by dissimilatory iron reducing bacteria (DIRB) with between 52% and 73% Fe(III) converted to Fe(II) after 31 days, higher than without DIRB. Formation of ferrous phases was linearly coupled to almost complete removal of both aqueous and exchangeable phosphate. Simple model calculations based on the incubation data suggested ferrous phases bound phosphate with a ...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
International audienceThe significant accumulation of Pb from anthropogenic activities threatens env...
International audienceWe report the first results on microbial Fe (III) reduction of magnetite in th...
International audienceThe reduction of less stable ferric hydroxides and formation of ferrous phases...
Biogeochemical transformation (inclusive of dissolution) of iron (hydr)oxides resulting from dissimi...
Biogeochemical transformation (inclusive of dissolution) of iron (hydr)oxides resulting from dissimi...
BioIronTech is a biological process of employing iron-reducing bacteria to reduce ferric iron (Fe3+)...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from sewag...
<p>Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from se...
Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from sewag...
<p>Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from se...
<p>Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from se...
The close linkage between iron (Fe) and phosphorus (P) suggests that changes in Fe speciation may ha...
The close linkage between iron (Fe) and phosphorus (P) suggests that changes in Fe speciation may ha...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
International audienceThe significant accumulation of Pb from anthropogenic activities threatens env...
International audienceWe report the first results on microbial Fe (III) reduction of magnetite in th...
International audienceThe reduction of less stable ferric hydroxides and formation of ferrous phases...
Biogeochemical transformation (inclusive of dissolution) of iron (hydr)oxides resulting from dissimi...
Biogeochemical transformation (inclusive of dissolution) of iron (hydr)oxides resulting from dissimi...
BioIronTech is a biological process of employing iron-reducing bacteria to reduce ferric iron (Fe3+)...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from sewag...
<p>Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from se...
Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from sewag...
<p>Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from se...
<p>Iron is an important element for modern sewage treatment, inter alia to remove phosphorus from se...
The close linkage between iron (Fe) and phosphorus (P) suggests that changes in Fe speciation may ha...
The close linkage between iron (Fe) and phosphorus (P) suggests that changes in Fe speciation may ha...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
International audienceThe significant accumulation of Pb from anthropogenic activities threatens env...
International audienceWe report the first results on microbial Fe (III) reduction of magnetite in th...