In many anoxic sedimentary environments, the onset of sulfate reduction, and pyritization of detrital iron-bearing minerals, leads to a precipitous decline in magnetic mineral concentration during early diagenesis. The usefulness of the surviving paleomagnetic record in such environments is usually argued to depend on how much of the primary detrital magnetic assemblage survives diagenetic dissolution. Detailed rock magnetic and electron microscope analyses of rapidly deposited (~ 7 cm/kyr) latest Pleistocene-Holocene sediments from the continental margins of Oman (22°22.4′N, 60°08.0′E) and northern California (38°24.8′N, 123°58.2′W) demonstrate that pyritization during early diagenesis also leads to the progressive down-core growth of the ...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Sediments and sedimentary rocks are important sources for paleomagnetic studies of the geomagnetic f...
In many anoxic sedimentary environments, the onset of sulfate reduction, and pyritization of detrita...
Diagenetic alteration of magnetic minerals occurs in all sedimentary environments and tends to be se...
Diagenetic alteration of magnetic minerals occurs in all sedimentary environments and tends to be se...
Two studied sediment cores from the Korea Strait contain mud sequences (14 m and 32.62 m in thicknes...
Detailed rock magnetic and electron microscope analyses indicate that the magnetic signature of Neog...
Reduction-oxidation (redox) reactions occur during burial because sediments contain reactive mixture...
Shipboard paleomagnetic studies on Ocean Drilling Program Leg 130 were plagued by a severe reduction...
Detailed rock magnetic and electron microscope analyses indicate that the magnetic signature of Neog...
Sedimentary greigite (Fe3S4) is being increasingly implicated as the carrier of late diagenetic rema...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Greigite (Fe3S4) is a widespread authigenic magnetic mineral in anoxic sediments and is also commonl...
Sediments and sedimentary rocks are important sources for paleomagnetic studies of the geomagnetic f...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Sediments and sedimentary rocks are important sources for paleomagnetic studies of the geomagnetic f...
In many anoxic sedimentary environments, the onset of sulfate reduction, and pyritization of detrita...
Diagenetic alteration of magnetic minerals occurs in all sedimentary environments and tends to be se...
Diagenetic alteration of magnetic minerals occurs in all sedimentary environments and tends to be se...
Two studied sediment cores from the Korea Strait contain mud sequences (14 m and 32.62 m in thicknes...
Detailed rock magnetic and electron microscope analyses indicate that the magnetic signature of Neog...
Reduction-oxidation (redox) reactions occur during burial because sediments contain reactive mixture...
Shipboard paleomagnetic studies on Ocean Drilling Program Leg 130 were plagued by a severe reduction...
Detailed rock magnetic and electron microscope analyses indicate that the magnetic signature of Neog...
Sedimentary greigite (Fe3S4) is being increasingly implicated as the carrier of late diagenetic rema...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Greigite (Fe3S4) is a widespread authigenic magnetic mineral in anoxic sediments and is also commonl...
Sediments and sedimentary rocks are important sources for paleomagnetic studies of the geomagnetic f...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Authigenic greigite may form at any time within a sediment during diagenesis. Its formation pathway,...
Sediments and sedimentary rocks are important sources for paleomagnetic studies of the geomagnetic f...