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The Extreme Proterozoic: Geology, Geochemistry, and Climate

The Extreme Proterozoic: Geology, Geochemistry, and Climate

Gregory J. Jenkins, Mark A. S. McMenamin, Christopher P. McKay, Linda Sohl
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Published by the American Geophysical Union as part of the Geophysical Monograph Series.

Earth climate is uniquely determined at any time by the varied interactions of its components: lithosphere, biosphere, atmosphere, hydrosphere (ocean, lakes and rivers) and cryosphere. Over the past 544 million years (the Phanerozoic Eon), these components of the climate system have undergone significant changes but perhaps none more extreme than in the Proterozoic Era (2.5 G-544 Ma) With at least three periods with low-latitude glacial deposits (during the Palaeoproterozoic and Neoproterozoic), the cryosphere may have dominated the earth's surface, possibly the only such event in earth's history. Indeed, if the Earth had an obliquity similar to the present (23.45), then low-latitude glaciation could represent a nearly ice- and snow-covered globe. Effects would have been multiform: The influence of the hydrosphere would have been at a minimum and most living organisms would have been confined to small areas of open ocean if they existed at all, or possibly near hydrothermal vents. The atmosphere would have been very dry and nearly cloud-free.Content:
年:
2004
出版社:
American Geophysical Union
语言:
english
页:
218
ISBN 10:
1118666283
ISBN 13:
9781118666289
文件:
PDF, 32.26 MB
IPFS:
CID , CID Blake2b
english, 2004
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