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Oceanic Euxinia
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#393979
Oceanic anoxic events refer to intervals in the Earth's past where portions of oceans become depleted in oxygen (O2) at depths over a large geographic area. During some of these events, euxinia develops - anoxic waters that contain high concentrations of hydrogen sulfide (H2S). Although anoxic events have not happened for millions of years, the geological record shows that they happened many times in the past, and coincide with, and may have contributed to, several mass extinctions. [1]
Tags: Hydrogen sulfide extinction
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Oceanic Euxinia
Oceanic EuxiniaâOceanic anoxic events refer to intervals in the Earths past where portions of oceans become depleted in oxygen (O2) at depths over a large geographic area. During some of these events, euxinia develops - anoxic waters that contain high concentrations of hydrogen sulfide (H2S). Although anoxic events have not happened for millions of years, the geological record shows that they happened many times in the past, and coincide with, and may have contributed to, several mass extinctions. [1]â9FDEF6
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[1]
Anoxic event
Zitieren:
Wikipedia
Zitiert von:
David Price
8:16 PM 28 May 2015 GMT
URL:
http://en.wikipedia.org/wiki/Anoxic_event
Link
[2]
Massive release of hydrogen sulfide to the surface ocean and atmosphere during intervals of oceanic anoxia
Zitieren:
Lee R. Kump, Alexander Pavlov, Michael A. Arthur
Publication info:
2004, Geology, v. 33 no. 5 p. 397-400 doi: 10.1130/G21295.1
Zitiert von:
David Price
8:19 PM 28 May 2015 GMT
URL:
http://geology.gsapubs.org/content/33/5/397.abstract
Auszug -
Simple calculations show that if deep-water H2S concentrations increased beyond a critical threshold during oceanic anoxic intervals of Earth history, the chemocline separating sulfidic deep waters from oxygenated surface waters could have risen abruptly to the ocean surface (a chemocline upward excursion). Atmospheric photochemical modeling indicates that resulting fluxes of H2S to the atmosphere (>2000 times the small modern flux from volcanoes) would likely have led to toxic levels of H2S in the atmosphere. Moreover, the ozone shield would have been destroyed, and methane levels would have risen to >100 ppm. We thus propose (1) chemocline upward excursion as a kill mechanism during the end-Permian, Late Devonian, and CenomanianâTuronian extinctions, and (2) persistently high atmospheric H2S levels as a factor that impeded evolution of eukaryotic life on land during the Proterozoic.
Link
[3]
Under A Green Sky
Zitieren:
Peter Ward
Publication info:
2008
Zitiert von:
David Price
8:24 PM 28 May 2015 GMT
URL:
http://www.harpercollins.com/web-sampler/9780061137921
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Eingabedatum (GMT):
5/28/2015 8:16:00 PM
Zuletzt geÀndert am (GMT):
10/27/2024 9:26:00 AM
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