Abstract
Chadlin M. Ostrander, Andy W. Heard, Donald E. Canfield, Philip Fralick, Sune G. Nielsen, Jean N.R. Clemente, Simon W. Poulton
Abstract
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Discovery of distal ejecta from the Sudbury impact event
10.1130/g21048.1 · 2005
Rapid and pronounced oceanic deoxygenation fluctuations during the Late Jurassic recorded by thallium isotopes
10.1038/s43247-026-03640-7 · 2026
Pb, O, and C isotopes in silicified Mooidraai dolomite (Transvaal Supergroup, South Africa): implications for the composition of paleoproterozoic seawater and “dating” the increase of oxygen in the precambrian atmosphere
10.1016/s0012-821x(99)00261-7 · 1999
Iron formation: the sedimentary product of a complex interplay among mantle, tectonic, oceanic, and biospheric processes
10.2113/gsecongeo.105.3.467 · 2010
Integrated genomic and fossil evidence illuminates life’s early evolution and eukaryotic origin
10.1038/s41559-018-0644-x · 2018
Linking the progressive expansion of reducing conditions to a stepwise mass extinction event in the late silurian oceans
10.1130/g46571.1 · 2019
Sedimentary geochemistry of manganese: implications for the environment of formation of manganiferous black shales
10.2113/gsecongeo.91.1.36 · 1996
A new model for proterozoic ocean chemistry
10.1038/24839 · 1998
Animal evolution, bioturbation, and the sulfate concentration of the oceans
openalex
Confidence 95%
datacite
Confidence 0%
10.1073/pnas.0902037106 · 2009
Transient marine bottom water oxygenation on continental shelves by 2.65 billion years ago
10.1038/s41561-025-01681-9 · 2025
Thallium isotopes suggest the global deep ocean did not approach modern oxygenation during cambrian age 3 metazoan radiation
10.1111/gbi.70028 · 2025
Atmospheric and hydrospheric evolution on the primitive Earth
10.1126/science.160.3829.729 · 1968
Constraining oceanic oxygenation during the Shuram excursion in South China using thallium isotopes
10.1111/gbi.12379 · 2020
Early oxidation of organic matter in pelagic sediments of the eastern equatorial Atlantic: suboxic diagenesis
10.1016/0016-7037(79)90095-4 · 1979
Perspectives on proterozoic surface ocean redox fromm iodine contents in ancient and recent carbonate
10.1016/j.epsl.2017.01.032 · 2017
Coupled vanadium and thallium isotope constraints on mesoproterozoic ocean oxygenation around 1.38-1.39
2023
10.1515/9780691220239
10.1515/9780691220239
Manganese mineralogy and diagenesis in the sedimentary record
10.1016/j.gca.2015.10.027 · 2016
Molybdenum isotope constraints on the extent of late paleoproterozoic ocean euxinia
10.1016/j.epsl.2011.05.019 · 2011
Oxygenation of the proterozoic Earth’s surface: an evolving story
2024
Progressive marine oxygenation and climatic cooling at the height of the great ordovician biodiversification event
10.1016/j.gloplacha.2023.104183 · 2023
Protracted oxygenation across the cambrian-ordovician transition: a key initiator of the Great ordovician Biodiversification Event?
10.1111/gbi.12545 · 2023
Rapid marine oxygen variability: driver of the Late ordovician mass extinction
10.1126/sciadv.abn8345 · 2022
Controls on uranium isotope fractionation in the late paleoproterozoic ocean
10.1016/j.epsl.2025.119498 · 2025
A small marine biosphere in the Proterozoic
10.1111/gbi.12323 · 2019
New constraints on mid-proterozoic ocean redox from stable thallium isotope systematics of black shales
10.1016/j.gca.2021.09.006 · 2021
Thallium adsorption on three iron (hydr)oxides and Tl isotopic fractionation induced by adsorption on ferrihydrite
10.1016/j.scitotenv.2023.161863 · 2023
A persistently low level of atmospheric oxygen in Earth’s middle age
10.1038/s41467-020-20484-7 · 2021
Terminal proterozoic reorganization of biogeochemical cycles
10.1038/376053a0 · 1995
Reconciling archean organic-rich mudrocks with low primary productivity before the great oxygenation event
10.1073/pnas.2417673121 · 2025
Stratigraphy and sedimentology of the lower proterozoic Virginia Formation
1983
Stratigraphic framework of middle proterozoic rocks in minnesota
1973
Refining the signature of thallium isotopes in low oxygen marine environments
10.1016/j.gca.2025.08.020 · 2025
Transient ocean oxygenation at end-permian mass extinction onset shown by thallium isotopes
10.1038/s41561-021-00802-4 · 2021
The precise and accurate determination of thallium isotope compositions and concentrations for water samples by MC-ICPMS
10.1016/j.chemgeo.2003.11.006 · 2004
Thallium isotope composition of the upper continental crust and rivers – an investigation of the continental sources of dissolved marine thallium
10.1016/j.gca.2004.10.025 · 2005
Investigation and application of thallium isotope fractionation
10.2138/rmg.2017.82.18 · 2017
Hydrothermal fluid fluxes calculated from the isotopic mass balance of thallium in the ocean crust
10.1016/j.epsl.2006.09.002 · 2006
Towards an understanding of thallium isotope fractionation during adsorption to manganese oxides
10.1016/j.gca.2013.05.004 · 2013
Widespread seafloor anoxia during generation of the Ediacaran shuram carbon isotope excursion
10.1111/gbi.12557 · 2023
Thallium isotopic evidence for the Tonian rise and cryogenian fall of neoproterozoic oxygen levels
10.1130/g53625.1 · doi-reference
Thallium oxidative fractionation on birnessite-like phases: insights from mineralogical and isotope analyses of adsorption time series experiments
10.1016/j.gca.2026.04.005 · doi-reference
10.1016/j.epsl.2026.119937
10.1016/j.epsl.2026.119937 · doi-reference
Beyond anoxia: exploring sedimentary thallium isotopes in paleo-redox reconstructions from a new core top collection
10.1016/j.gca.2022.07.022 · doi-reference
Global oceanic oxygenation controlled by the Southern Ocean through the last deglaciation
10.4028/b-wjqrp6 · doi-reference
Orbitally paced global oceanic deoxygenation decoupled from volcanic CO2 emission during the middle cretaceous oceanic anoxic event 1b (Aptian-Albian transition)
10.1130/g50553.1 · doi-reference
Reconstruction of marine redox landscape during the cryogenian interglacial oceans using thallium isotopes
10.1016/j.epsl.2025.119419 · doi-reference
Thallium isotopes reveal protracted anoxia during the Toarcian (Early Jurassic) associated with volcanism, carbon burial, and mass extinction
10.1073/pnas.1803478115 · doi-reference
A record of deep-ocean dissolved O2 from the oxidation state of iron in submarine basalts
10.1038/nature25009 · doi-reference
Early diagenesis in differing depositional environments: the response of transition metals in pore water
10.1016/0016-7037(90)90149-f · doi-reference
Role of nuclear volume in driving equilibrium stable isotope fractionation of mercury, thallium, and other very heavy elements
10.1016/j.gca.2007.02.004 · doi-reference
The history of ocean oxygenation
10.1146/annurev-marine-031721-104005 · doi-reference
The mass balance of dissolved thallium in the oceans
10.1016/j.marchem.2003.09.006 · doi-reference
Thallium isotope variations in seawater and hydrogenetic, diagenetic, and hydrothermal ferromanganese deposits
10.1016/s0012-821x(02)00462-4 · doi-reference
Deposition of 1.88-billion-year-old iron formations as a consequence of rapid crustal growth
10.1038/nature11021 · doi-reference
Sedimentary thallium isotopes as a proxy for reconstructing global oceanic oxygenation during millennial-scale events
10.1016/j.gca.2025.12.049 · doi-reference
Depositional controls on paleoproterozoic iron formation accumulation, Gogebic Range, Lake Superior Region, USA
10.1111/j.1365-3091.2004.00651.x · doi-reference
Spatial variability in oceanic redox structure 1.8 billion years ago
10.1038/ngeo889 · doi-reference
The transition to a sulphidic ocean 1.84 billion years ago
10.1038/nature02912 · doi-reference
Ferruginous conditions: a dominant feature of the ocean through Earth’s history
10.2113/gselements.7.2.107 · doi-reference
10.1017/9781108847148
10.1017/9781108847148 · doi-reference
Evidence for episodic oxygenation in a weakly redox-buffered deep mid-proterozoic ocean
10.1016/j.chemgeo.2018.03.028 · doi-reference
Widespread iron-rich conditions in the mid-proterozoic ocean
10.1038/nature10327 · doi-reference
The role of manganese oxide mineralogy in thallium isotopic fractionation upon sorption
10.1016/j.gca.2023.07.011 · doi-reference
Oxidative scavenging of thallium by birnessite: explanation for thallium enrichment and stable isotope fractionation in marine ferromanganese precipitates
10.1016/j.gca.2012.01.036 · doi-reference
Estimating the timing of early eukaryotic diversification with multigene molecular clocks
10.1073/pnas.1110633108 · doi-reference
Thallium-isotopic compositions of euxinic sediments as a proxy for global manganese-oxide burial
10.1016/j.gca.2017.06.041 · doi-reference
Anthropogenic forcing of the Baltic Sea thallium cycle
10.1021/acs.est.4c01487 · doi-reference
Thallium isotope ratios in shales from South China and northwestern Canada suggest widespread O2 accumulation in marine bottom waters was a very uncommon occurrence during the ediacaran period
10.1016/j.chemgeo.2020.119856 · doi-reference
Constraining the rate of oceanic deoxygenation leading up to a cretaceous oceanic anoxic event (OAE-2: ∼94Ma)
10.1126/sciadv.1701020 · doi-reference
Fully oxygenated water columns over continental shelves before the great oxidation event
10.1038/s41561-019-0309-7 · doi-reference
Thallium isotope cycling between waters, particles, and sediments across a redox gradient
10.1016/j.gca.2023.03.028 · doi-reference
Thallium isotope cycling in a ferruginous precambrian ocean analogue
10.1016/j.gca.2024.12.008 · doi-reference
Onset of coupled atmosphere-ocean oxygenation 2.3 billion years ago
10.1038/s41586-024-07551-5 · doi-reference
Rethinking seawater Mo isotope mass-balance and the sedimentary Mo record
10.1029/2025pa005313 · doi-reference
Dynamic deep marine oxygenation during the early and Middle Paleozoic
10.1126/sciadv.adw5878 · doi-reference
Widespread seafloor anoxia during generation of the Ediacaran shuram carbon isotope excursion
10.1111/gbi.12557 · doi-reference
Towards an understanding of thallium isotope fractionation during adsorption to manganese oxides
10.1016/j.gca.2013.05.004 · doi-reference
Hydrothermal fluid fluxes calculated from the isotopic mass balance of thallium in the ocean crust
10.1016/j.epsl.2006.09.002 · doi-reference
Investigation and application of thallium isotope fractionation
10.2138/rmg.2017.82.18 · doi-reference