0000000000985317

AUTHOR

Sarah E. Greene

0000-0002-3025-9043

showing 2 related works from this author

Mercury contents and isotope ratios from diverse depositional environments across the Triassic–Jurassic Boundary: Towards a more robust mercury proxy…

2021

Abstract Mercury is gaining prominence as a proxy for large igneous province (LIP) volcanism in the sedimentary record. Despite temporal overlap between some mass extinctions and LIPs, the precise timing of magmatism relative to major ecological and environmental change is difficult to untangle, especially in marine settings. Changes in the relative contents of Hg in sedimentary rocks through time, or ‘Hg anomalies’, can help resolve the timing of LIP activity and marine extinctions. However, major questions remain unanswered about the fidelity of Hg as a proxy for LIP magmatism. In particular, depositional (e.g., redox) and post-depositional (e.g., oxidative weathering) processes can affec…

Extinction eventCarbonate platformLithologyStable isotope ratioLarge igneous provinceGeochemistryMercuryEnd–Triassic extinction Mercury isotope Triassic–Jurassic boundary MercuryEnd–Triassic extinction; Mercury; Mercury isotope; Triassic–Jurassic boundaryMercury isotopeSedimentary depositional environmentEnd–Triassic extinctionMagmatismGeneral Earth and Planetary SciencesSedimentary rockTriassic–Jurassic boundaryGeologyEarth-Science Reviews
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Inclusion of a suite of weathering tracers in the cGENIE Earth system model-muffin release v.0.9.23

2021

Abstract. The metals strontium (Sr), lithium (Li), osmium (Os) and calcium (Ca), together with their isotopes, are important tracers of weathering and volcanism – primary processes which shape the long-term cycling of carbon and other biogeochemically important elements at the Earth's surface. Traditionally, because of their long residence times in the ocean, isotopic shifts in these four elements observed in the geologic record are almost exclusively interpreted with the aid of isotope-mixing, tracer-specific box models. However, such models may lack a mechanistic description of the links between the cycling of the four metals to other geochemically relevant elements, particularly carbon, …

QE1-996.5Biogeochemical cycleStrontium010504 meteorology & atmospheric sciencesEarth sciencechemistry.chemical_elementGeologyWeatheringGeneral Medicine010502 geochemistry & geophysicsGeologic record7. Clean energy01 natural sciencesAtmospherechemistry13. Climate actionEnvironmental scienceLithiumCarbonEarth (classical element)0105 earth and related environmental sciences
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