Reading the Archive of Earth's Oxygenation
Volume 3: Global Events and the Fennoscandian Arctic Russia - Drilling Early Earth Project
(Sprache: Englisch)
This is the third of three volumes that survey the Palaeoproterozoic Eon with a focus on Fennoscandian Shield geology, reviewing early Palaeoproterozoic events coincident with Earth's progressive oxygenation. Includes photos of the FAR-DEEP core collection.
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This is the third of three volumes that survey the Palaeoproterozoic Eon with a focus on Fennoscandian Shield geology, reviewing early Palaeoproterozoic events coincident with Earth's progressive oxygenation. Includes photos of the FAR-DEEP core collection.
Klappentext zu „Reading the Archive of Earth's Oxygenation “
Earth's present-day environments are the outcome of a 4.5 billion year period of evolution reflecting the interaction of global-scale geological and biological processes. Punctuating that evolution were several extraordinary events and episodes that perturbed the entire Earth system and led to the creation of new environmental conditions, sometimes even to fundamental changes in how planet Earth operated. Volume 3: Global Events and the Fennoscandian Arctic Russia - Drilling Earth Project represents another kind of illustrated journey through the early Palaeoproterozoic, provided by syntheses, reviews and summaries of the current state of our understanding of a series of global events that resulted in a fundamental change of the Earth System from an anoxic to an oxic state. The book discusses traces of life, possible causes for the Huronian-age glaciations, addresses radical changes in carbon, sulphur and phosphorus cycles during the Palaeoproterozoic, and provides a comprehensive description and a rich photo-documentation of the early Palaeoproterozoic supergiant, petrified oil-field. Terrestrial environments are characterised through a critical review of available data on weathered and calichified surfaces and travertine deposits. Potential implementation of Ca, Mg, Sr, Fe, Mo, U and Re-Os isotope systems for deciphering Palaeoproterozoic seawater chemistry and a change in the redox-state of water and sedimentary columns are discussed. The volume considers in detail the definition of the oxic atmosphere, possible causes for the oxygen rise, and considers the oxidation of terrestrial environment not as a single event, but a slow-motion process lasting over hundreds of millions of years. Finally, the book provides a roadmap as to how the FAR-DEEP cores may facilitate future interesting science and provide a new foundation for education in earth-science community. Welcome to the illustrative journey through one of the most exciting periods ofplanet Earth!
Inhaltsverzeichnis zu „Reading the Archive of Earth's Oxygenation “
Part VII Earth's Oxygenation and Associated Global Events:The FAR-DEEP Perspective.- Part VIII The Great Oxidation Event: State of the Art and Major 433 Unresolved Problems.- Part IX FAR-DEEP Core Archive: Future Opportunities for Geoscience Research and Education.Bibliographische Angaben
- 2016, Softcover reprint of the original 1st ed. 2013, XXII, 506 Seiten, 177 farbige Abbildungen, Maße: 21 x 27,9 cm, Kartoniert (TB), Englisch
- Herausgegeben: Victor Melezhik, Anthony R. Prave, Eero J. Hanski, Anthony E. Fallick, Aivo Lepland, Lee R. Kump, Harald Strauß
- Verlag: Springer, Berlin
- ISBN-10: 3662522039
- ISBN-13: 9783662522035
Sprache:
Englisch
Pressezitat
"The third volume of the three-volume set dedicated to this outstanding project comprises major theoretical contributions reviewing the planetary dynamics at the times of the so-called 'Great Oxidation Event. ... strongly recommended to all Precambrain geologists (including stratigraphers, geochemists, and economic geologists) and palaeontologists (including palaeobiologists and geo-(astro-)biologists) ... . This volume will be both interesting and enjoyable to not only professionals, but also many students specialized in the Precambrian geology." (Zentralblatt für Geologie und Paläontologie, Issue 5-6, 2014)Kommentar zu "Reading the Archive of Earth's Oxygenation"
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