Iron isotope fractionation between aqueous Fe(II) and biogenic magnetite and Fe carbonates produced during reduction of hydrous ferric oxide (HFO) by Shewanella putrefaciens, Shewanella algae, and Geobacter sulfurreducens in laboratory experiments is a function of Fe(III) reduction rates and pathways by which biogenic minerals are formed. High Fe(III) reduction rates produced 56Fe/54Fe ratios for Fe(II)aq that are 2-3‰ lower than the HFO substrate, reflecting a kinetic isotope fractionation that was associated with rapid sorption of Fe(II) to HFO. In long-term experiments at low Fe(III) reduction rates, the Fe(II)aq -magnetite fractionation is -1.3‰, and this is interpreted to be the equilibrium fractionation factor at 22°C in the biologic ...
We report the first experimentally-determined metal isotope equilibrium fractionation factors for a ...
International audienceThe iron isotope composition of iron-bearing carbonates is commonly used to ob...
The inventories and Fe isotope composition of aqueous Fe(II) and solid-phase Fe compounds were quant...
Iron isotope fractionation between aqueous Fe(II) and biogenic magnetite and Fe carbonates produced ...
We report on stable Fe isotope fractionation during microbial and chemical reduction of structural F...
Isotopic compositions of biogenic iron minerals may be used to infer environmental conditions under ...
© 2016 American Chemical Society. This is an open access article published under an ACS AuthorChoice...
Iron isotope fractionations produced during chemical and biological Fe(II) oxidation are sensitive t...
Having knowledge of mechanism of magnetite formation is essential in a number of industrial processe...
Fe released into solution is isotopically lighter (enriched in the lighter isotope) than hornblende ...
Initial published work suggested that Fe isotope fractionations recorded in sediments were a product...
Dissimilatory microbial iron oxide reduction (DIR) has been hypothesized to be an important respirat...
Photoautotrophic bacteria that oxidize ferrous iron (Fe[II]) under anaerobic conditions are thought ...
International audienceIron formations (IFs) are chemical sedimentary rocks that were widely deposite...
UnrestrictedThe aim of my work is to elucidate the interactions between microbes and minerals. The w...
We report the first experimentally-determined metal isotope equilibrium fractionation factors for a ...
International audienceThe iron isotope composition of iron-bearing carbonates is commonly used to ob...
The inventories and Fe isotope composition of aqueous Fe(II) and solid-phase Fe compounds were quant...
Iron isotope fractionation between aqueous Fe(II) and biogenic magnetite and Fe carbonates produced ...
We report on stable Fe isotope fractionation during microbial and chemical reduction of structural F...
Isotopic compositions of biogenic iron minerals may be used to infer environmental conditions under ...
© 2016 American Chemical Society. This is an open access article published under an ACS AuthorChoice...
Iron isotope fractionations produced during chemical and biological Fe(II) oxidation are sensitive t...
Having knowledge of mechanism of magnetite formation is essential in a number of industrial processe...
Fe released into solution is isotopically lighter (enriched in the lighter isotope) than hornblende ...
Initial published work suggested that Fe isotope fractionations recorded in sediments were a product...
Dissimilatory microbial iron oxide reduction (DIR) has been hypothesized to be an important respirat...
Photoautotrophic bacteria that oxidize ferrous iron (Fe[II]) under anaerobic conditions are thought ...
International audienceIron formations (IFs) are chemical sedimentary rocks that were widely deposite...
UnrestrictedThe aim of my work is to elucidate the interactions between microbes and minerals. The w...
We report the first experimentally-determined metal isotope equilibrium fractionation factors for a ...
International audienceThe iron isotope composition of iron-bearing carbonates is commonly used to ob...
The inventories and Fe isotope composition of aqueous Fe(II) and solid-phase Fe compounds were quant...