Greigite (Fe3S4) is a widespread authigenic magnetic mineral in anoxic sediments and is also commonly biosynthesized by magnetotactic bacteria in aqueous environments. While the presence of fossilized bacterial magnetite (Fe3O4) has now been widely demonstrated, the preservation of greigite magnetofossils in the geological record is only poorly constrained. Here we investigate Mio-Pliocene sediments of the former Black Sea to test whether we can detect greigite magnetofossils and to unravel potential environmental controls on greigite formation. Our magnetic analyses and transmission electron microscope (TEM) observations indicate the presence of both diagenetic and bacterial greigite, and suggest a potentially widespread preservation of gr...
Detailed rock magnetic and electron microscope analyses indicate that the magnetic signature of Neog...
Greigite (Fe3S4) is a ferrimagnetic iron-sulfide mineral that forms in sediments during diagenesis. ...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
In many anoxic sedimentary environments, the onset of sulfate reduction, and pyritization of detrita...
Sedimentary greigite (Fe3S4) is being increasingly implicated as the carrier of late diagenetic rema...
In many anoxic sedimentary environments, the onset of sulfate reduction, and pyritization of detrita...
Greigite (Fe3S4) is a ferrimagnetic iron‐sulfide mineral that forms in sediments during diagenesis. ...
Abstract Diagenetic processes in anoxic sedimentary environments influence sediment magnetic propert...
Diagenetic processes in anoxic sedimentary environments influence sediment magnetic properties mainl...
Diagenetic processes in anoxic sedimentary environments influence sediment magnetic properties mainl...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Theoretical thesis.Spine title: Uncultivated magnetotactic bacteria and p-e paleo-redox changes, NJ ...
Magnetotactic bacteria (MTB) are known to biosynthesise single-domain magnetite (Fe3O4) for geomagne...
Diagenetic processes in anoxic sedimentary environments influence sediment magnetic properties mainl...
AbstractMagnetotactic bacteria (MTB) are known to biosynthesise single-domain magnetite (Fe3O4) for ...
Detailed rock magnetic and electron microscope analyses indicate that the magnetic signature of Neog...
Greigite (Fe3S4) is a ferrimagnetic iron-sulfide mineral that forms in sediments during diagenesis. ...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
In many anoxic sedimentary environments, the onset of sulfate reduction, and pyritization of detrita...
Sedimentary greigite (Fe3S4) is being increasingly implicated as the carrier of late diagenetic rema...
In many anoxic sedimentary environments, the onset of sulfate reduction, and pyritization of detrita...
Greigite (Fe3S4) is a ferrimagnetic iron‐sulfide mineral that forms in sediments during diagenesis. ...
Abstract Diagenetic processes in anoxic sedimentary environments influence sediment magnetic propert...
Diagenetic processes in anoxic sedimentary environments influence sediment magnetic properties mainl...
Diagenetic processes in anoxic sedimentary environments influence sediment magnetic properties mainl...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Theoretical thesis.Spine title: Uncultivated magnetotactic bacteria and p-e paleo-redox changes, NJ ...
Magnetotactic bacteria (MTB) are known to biosynthesise single-domain magnetite (Fe3O4) for geomagne...
Diagenetic processes in anoxic sedimentary environments influence sediment magnetic properties mainl...
AbstractMagnetotactic bacteria (MTB) are known to biosynthesise single-domain magnetite (Fe3O4) for ...
Detailed rock magnetic and electron microscope analyses indicate that the magnetic signature of Neog...
Greigite (Fe3S4) is a ferrimagnetic iron-sulfide mineral that forms in sediments during diagenesis. ...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...