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Carbon and Sulfur Cycling in Early Paleozoic Oceans

Carbon and Sulfur Cycling in Early Paleozoic Oceans
Author: Cara Kim Thompson
Publisher:
Total Pages: 218
Release: 2011
Genre:
ISBN:

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Here, I evaluate biospheric evolution during the Ordovician using high-resolution inorganic carbon and sulfur (carbonate-associated sulfate and pyrite) isotope profiles for Early Ordovician to early Late Ordovician strata from geographically distant sections in Western Newfoundland and the Argentine Precordillera. Additionally, I present new, high-resolution U-Pb ages for volcanic ash beds within strata of the Argentine Precordillera. Carbon isotope data record subdued variation that is typical of Early to Middle Ordovician strata worldwide. By contrast, sulfur isotopic compositions of carbonate-associated sulfate reveal a complex signal of short-term, rhythmic variation superimposed over a longer-term signal. This short-term, rhythmic variation occurs in all sections and appears to be unrelated to lithology or depositional environment, suggesting preservation of an oceanographic signal. I interpret this signal to reflect a combination of a marine sulfate reservoir that was likely much smaller than the modern, the persistence of a substantial deep-ocean hydrogen sulfide reservoir, and the episodic oxidation of a portion of the deep-ocean euxinic reservoir. Persistent euxinia likely resulted from decreased solubility of oxygen in warmer water and/or sluggish oceanic circulation during greenhouse conditions that reduced vertical ventilation. A dramatic change in the behavior of carbonate-associated sulfate and pyrite in the Middle Ordovician is interpreted to reflect a major oceanographic event that records the initial transition from Ordovician greenhouse to icehouse states. I suggest that the initiation of downwelling of increasingly cool, oxygen-rich surface water resulted in widespread oxidation of much of the deep ocean hydrogen sulfide reservoir and concomitant limitation of marine pyrite formation. It is unknown, however, why sea surface temperatures declined through the Early to Middle Ordovician. Explosive volcanism does not appear to be a primary climate driver, based on the timing of Argentinian K-bentonite formations relative to marine records of sea surface temperature, carbon and strontium isotopic composition. Rather, long-term positive feedback between organic carbon burial rates and productivity may have increased carbon dioxide drawdown, ultimately driving a gradual decrease in sea surface temperatures in the Early to Middle Ordovician.


Proxy Applications for Reconstructing Carbon and Sulfur Cycling in Ancient Marine Environments

Proxy Applications for Reconstructing Carbon and Sulfur Cycling in Ancient Marine Environments
Author: Leanne Grace Hancock
Publisher:
Total Pages: 229
Release: 2018
Genre: Biogeochemical cycles
ISBN: 9780438429710

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First, I explore the role of hydrocarbon seep environments as a source of methane and reduced sulfur to the oceans, atmosphere, and biosphere using a system of Cretaceous-aged seeps in Colorado, U.S.A. The connection between sulfur and carbon cycling in seep settings through coupled sulfate reduction and anaerobic methane oxidation suggests that sulfur isotope compositions of carbonate-bound sulfate can be used to track paleo-sulfate reduction rates and methane concentrations.


The Chemical Evolution of the Atmosphere and Oceans

The Chemical Evolution of the Atmosphere and Oceans
Author: Heinrich D. Holland
Publisher: Princeton University Press
Total Pages: 604
Release: 1984-07-21
Genre: Science
ISBN: 9780691023816

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In this first full-scale attempt to reconstruct the chemical evolution of the Earth's atmosphere and oceans, Heinrich Holland assembles data from a wide spectrum of fields to trace the history of the ocean-atmosphere system. A pioneer in an increasingly important area of scholarship, he presents a comprehensive treatment of knowledge on this subject, provides an extensive bibliography, and outlines problems and approaches for further research. The first four chapters deal with the turbulent first half billion years of Earth history. The next four chapters, devoted largely to the Earth from 3.9 to 0.6 b.y.b.p., demonstrate that changes in the atmosphere and oceans during this period were not dramatic. The last chapter of the book deals with the Phanerozoic Eon; although the isotopic composition of sulfur and strontium in seawater varied greatly during this period of Earth history, the chemical composition of seawater did not.


Deep Carbon

Deep Carbon
Author: Beth N. Orcutt
Publisher: Cambridge University Press
Total Pages: 687
Release: 2019-10-17
Genre: Nature
ISBN: 1108477496

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A comprehensive guide to carbon inside Earth - its quantities, movements, forms, origins, changes over time and impact on planetary processes. This title is also available as Open Access on Cambridge Core.


The Ocean Carbon Cycle and Climate

The Ocean Carbon Cycle and Climate
Author: Mick Follows
Publisher: Springer Science & Business Media
Total Pages: 401
Release: 2012-12-06
Genre: Science
ISBN: 1402020872

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Our desire to understand the global carbon cycle and its link to the climate system represents a huge challenge. These overarching questions have driven a great deal of scientific endeavour in recent years: What are the basic oceanic mechanisms which control the oceanic carbon reservoirs and the partitioning of carbon between ocean and atmosphere? How do these mechanisms depend on the state of the climate system and how does the carbon cycle feed back on climate? What is the current rate at which fossil fuel carbon dioxide is absorbed by the oceans and how might this change in the future? To begin to answer these questions we must first understand the distribution of carbon in the ocean, its partitioning between different ocean reservoirs (the "solubility" and "biological" pumps of carbon), the mechanisms controlling these reservoirs, and the relationship of the significant physical and biological processes to the physical environment. The recent surveys from the JGOFS and WOCE (Joint Global Ocean Flux Study and World Ocean Circulation Ex periment) programs have given us a first truly global survey of the physical and biogeochemical properties of the ocean. These new, high quality data provide the opportunity to better quantify the present oceans reservoirs of carbon and the changes due to fossil fuel burning. In addition, diverse process studies and time-series observations have clearly revealed the complexity of interactions between nutrient cycles, ecosystems, the carbon-cycle and the physical envi ronment.


Geochemical Transformations of Sedimentary Sulfur

Geochemical Transformations of Sedimentary Sulfur
Author: Murthy A. Vairavamurthy
Publisher:
Total Pages: 596
Release: 1995
Genre: Nature
ISBN:

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Offers a comprehensive discussion of the geochemistry of sedimentary sulfur, including low temperature transformation in early diagenesis, thermal reactions occurring during later diagenesis and catagenesis. Provides a detailed examination of sulfur-organic matter interactions. Presents an interdisciplinary overview of recent research in the complex process of sedimentary sulfur transformations. Includes contributions from internationally recognized experts in the field.


The Changing Ocean Carbon Cycle

The Changing Ocean Carbon Cycle
Author: Roger B. Hanson
Publisher: Cambridge University Press
Total Pages: 540
Release: 2000-01-13
Genre: Nature
ISBN: 9780521656030

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The world's oceans act as a reservoir, with the capacity to absorb and retain carbon dioxide. The air-sea exchange of carbon is driven by physico-chemical forces, photosynthesis, and respiration, and has an important influence on atmospheric composition. Variability in the ocean carbon cycle could therefore exert significant feedback effects during conditions of climate change. The Joint Global Ocean Flux Study (JGOFS) is the first multidisciplinary program to directly address the interactions among the biology, chemistry, and physics of marine systems, with emphasis on the transport and transformations of carbon within the ocean and across its boundaries. This unique volume, written by an international panel of scientists, provides a synthesis of JGOFS science and its achievements to date. The authoritative chapters will be of great interest to readers seeking a current overview of the role of ocean processes in Earth system science and their wider implications for climate change.


Carbon Cycling in the Glacial Ocean: Constraints on the Ocean’s Role in Global Change

Carbon Cycling in the Glacial Ocean: Constraints on the Ocean’s Role in Global Change
Author: Rainer Zahn
Publisher: Springer Science & Business Media
Total Pages: 579
Release: 2013-06-29
Genre: Science
ISBN: 3642787371

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A comprehensive progress report on the multi-disciplinary field of ocean and climate change research is given. It compiles introductory background papers and leading scientific results on the ocean-atmosphere carbon cycle with emphasis on the ocean's carbon inventory and the various components involved. The relationship between plankton productivity, carbon fixation, oceanic PCO2 and climate change is investigated from the viewpoint of long-term climatic change during the late Quaternary cycles of ice ages and warm ages. The various approaches range from micropaleontology over organic and trace element geochemistry to molecular isotope geochemistry.


Chemical Cycles in the Evolution of the Earth

Chemical Cycles in the Evolution of the Earth
Author: C. Bryan Gregor
Publisher: Wiley-Interscience
Total Pages: 298
Release: 1988-04-29
Genre: Science
ISBN:

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A concise review of the geochemical cycles of terrestrial evolution, written by well-known geochemists. Treatment is accessible, yet covers many geochemical specialties. Edited to provide an interdisciplinary approach for professionals and advanced students of geology, geochemistry, and earth and atmospheric sciences.


Geologic Time Scale 2020

Geologic Time Scale 2020
Author: Felix M. Gradstein
Publisher: Elsevier
Total Pages: 1393
Release: 2020
Genre: Science
ISBN: 0128243619

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Geologic Time Scale 2020 (2 volume set) contains contributions from 80+ leading scientists who present syntheses in an easy-to-understand format that includes numerous color charts, maps and photographs. In addition to detailed overviews of chronostratigraphy, evolution, geochemistry, sequence stratigraphy and planetary geology, the GTS2020 volumes have separate chapters on each geologic period with compilations of the history of divisions, the current GSSPs (global boundary stratotypes), detailed bio-geochem-sequence correlation charts, and derivation of the age models. The authors are on the forefront of chronostratigraphic research and initiatives surrounding the creation of an international geologic time scale. The included charts display the most up-to-date, international standard as ratified by the International Commission on Stratigraphy and the International Union of Geological Sciences. As the framework for deciphering the history of our planet Earth, this book is essential for practicing Earth Scientists and academics. • Completely updated geologic time scale • Provides the most detailed integrated geologic time scale available that compiles and synthesize information in one reference • Gives insights on the construction, strengths and limitations of the geological time scale that greatly enhances its function and its utility