Tentative geochemical cycles for the pre-biologic Earth are developed by comparing the relative fluxes of oxygen, dissolved iron, and sulfide to the atmosphere and ocean. The flux of iron is found to exceed both the oxygen and the sulfide fluxes. Because of the insolubility of iron oxides and sulfides the implication is that dissolved iron was fairly abundant and that oxygen and sulfide were rare in the atmosphere and ocean. Sulfate, produced by the oxidation of volcanogenic sulfur gases, was the most abundant sulfur species in the ocean, but its concentration was low by modern standards because of the absence of the river-borne flux of dissolved sulfate produced by oxidative weathering of the continents.These findings are consistent with t...
Phanerozoic levels of atmospheric oxygen relate to the burial histories of organic carbon and pyrite...
Traditional models for pre-GOE oceans commonly view iron as a critical link to multiple biogeochemic...
University of Minnesota Ph.D. dissertation. 2018. Major: Water Resources Science. Advisor: Sergei Ka...
Walker, J.C.G. and Brimblecombe, P., 1985. Iron and sulfur in the pre-biologic ocean. Precambrian Re...
The Earth’s atmosphere and oceans have not always been oxygenated. The exact pathway and timing of t...
The presence of relatively abundant bedded sulfate deposits before 3.2 Ga and after 1.8 Ga, the peak...
The Earth’s atmosphere and oceans have not always been oxygenated. The exact pathway and timing of t...
Sulfur is mainly fixed in sediments as iron sulfides and the biogeochemistry of iron in aqueous solu...
The coupled biogeochemical cycles of iron and sulfur are central to the long-term biogeochemical evo...
The sulfur biogeochemical cycle integrates the metabolic activity of multiple microbial pathways (e....
Significant links exist between the sulfur cycle, sulfur geochemistry of sedimentary systems, and or...
The formation of sedimentary pyrite (FeS2), the principal sink for reduced sulfur in marine systems,...
Iron speciation in ancient sedimentary rocks is widely used to reconstruct oceanic redox conditions ...
Sulfate reduction and sulfur–iron geochemistry were studied in 5–6 m deep gravity cores of Holocene ...
The environment on pre-biotic Earth was characterised by a reducing atmosphere, consisting mainly of...
Phanerozoic levels of atmospheric oxygen relate to the burial histories of organic carbon and pyrite...
Traditional models for pre-GOE oceans commonly view iron as a critical link to multiple biogeochemic...
University of Minnesota Ph.D. dissertation. 2018. Major: Water Resources Science. Advisor: Sergei Ka...
Walker, J.C.G. and Brimblecombe, P., 1985. Iron and sulfur in the pre-biologic ocean. Precambrian Re...
The Earth’s atmosphere and oceans have not always been oxygenated. The exact pathway and timing of t...
The presence of relatively abundant bedded sulfate deposits before 3.2 Ga and after 1.8 Ga, the peak...
The Earth’s atmosphere and oceans have not always been oxygenated. The exact pathway and timing of t...
Sulfur is mainly fixed in sediments as iron sulfides and the biogeochemistry of iron in aqueous solu...
The coupled biogeochemical cycles of iron and sulfur are central to the long-term biogeochemical evo...
The sulfur biogeochemical cycle integrates the metabolic activity of multiple microbial pathways (e....
Significant links exist between the sulfur cycle, sulfur geochemistry of sedimentary systems, and or...
The formation of sedimentary pyrite (FeS2), the principal sink for reduced sulfur in marine systems,...
Iron speciation in ancient sedimentary rocks is widely used to reconstruct oceanic redox conditions ...
Sulfate reduction and sulfur–iron geochemistry were studied in 5–6 m deep gravity cores of Holocene ...
The environment on pre-biotic Earth was characterised by a reducing atmosphere, consisting mainly of...
Phanerozoic levels of atmospheric oxygen relate to the burial histories of organic carbon and pyrite...
Traditional models for pre-GOE oceans commonly view iron as a critical link to multiple biogeochemic...
University of Minnesota Ph.D. dissertation. 2018. Major: Water Resources Science. Advisor: Sergei Ka...