Biogeochemical transformation (inclusive of dissolution) of iron (hydr)oxides resulting from dissimilatory reduction has a pronounced impact on the fate and transport of nutrients and contaminants in subsurface environments. Despite the reactivity noted for pristine (unreacted) minerals, iron (hydr)oxides within native environments will likely have a different reactivity owing in part to changes in surface composition. Accordingly, here we explore the impact of surface modifications induced by phosphate adsorption on ferrihydrite reduction by Shewanella putrefaciens under static and advective flow conditions. Alterations in surface reactivity induced by phosphate changes the extent, decreasing Fe(III) reduction nearly linearly with increasi...
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...
Biogeochemical transformation (inclusive of dissolution) of iron (hydr)oxides resulting from dissimi...
International audienceThe reduction of less stable ferric hydroxides and formation of ferrous phases...
International audienceThe reduction of less stable ferric hydroxides and formation of ferrous phases...
Bioreduced anthraquinone-2,6-disulfonate (AH2DS; dihydro-anthraquinone) was reacted with a 2-line, S...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Bioreduced anthraquinone-2,6-disulfonate (AH2DS; dihydro-anthraquinone) was reacted with a 2-line, S...
© The Author(s), 2012. This article is distributed under the terms of the Creative Commons Attributi...
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...
Biogeochemical transformation (inclusive of dissolution) of iron (hydr)oxides resulting from dissimi...
International audienceThe reduction of less stable ferric hydroxides and formation of ferrous phases...
International audienceThe reduction of less stable ferric hydroxides and formation of ferrous phases...
Bioreduced anthraquinone-2,6-disulfonate (AH2DS; dihydro-anthraquinone) was reacted with a 2-line, S...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Dissimilatory iron-reducing bacteria (DIRB) couple the oxidation of organic matter or H2 to the redu...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Iron (Fe) cycling exerts strong control on the mobility and bioavailability of the key nutrient phos...
Bioreduced anthraquinone-2,6-disulfonate (AH2DS; dihydro-anthraquinone) was reacted with a 2-line, S...
© The Author(s), 2012. This article is distributed under the terms of the Creative Commons Attributi...
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...