Carbon and Nutrient Fluxes in Continental Margins

Carbon and Nutrient Fluxes in Continental Margins
Author: Kon-Kee Liu
Publisher: Springer Science & Business Media
Total Pages: 757
Release: 2010-02-11
Genre: Science
ISBN: 3540927352


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This book is a product of the joint JGOFS (Joint Global Ocean Flux Study)/LOICZ (Land–Ocean Interactions in the Coastal Zone) Continental Margins Task Team which was established to facilitate continental margins research in the two projects. It contains signi cant information on the physical, biogeochemical, and ecosystems of continental margins nationally and regionally and provides a very valuable synthesis of this information and the physical, biogeochemical and ecosystem processes which occur on continental margins. The publication of this book is timely as it provides a very strong foundation for the development of the joint IMBER (Integrated Marine Biogeochemistry and Ecosystems Research)/LOICZ Science Plan and Implemen- tion Strategy for biogeochemical and ecosystems research in the continental margins and the impacts of global change on these systems. This initiative will move forward integrated biogeochemical and ecosystems research in the continental margins. We thank all the contributors to this volume and especially Kon-Kee Liu who has dedicated a great deal of time to ensuring a high-quality book is published. IMBER Scienti c Steering Committee Julie Hall LOICZ Scienti c Steering Committee Jozef Pacyna v 1 Preface In general, interfaces between the Earth’s larger material reservoirs (i. e. , the land, atmosphere, ocean, and sediments) are important in the control of the biogeoche- cal dynamics and cycling of the major bio-essential elements, including carbon (C), nitrogen (N), phosphorus (P), sulfur (S), and silicon (Si), found in organic matter and the inorganic skeletons, shells, and tests of benthic and marine organisms.

The Organic Carbon Cycle in the Arctic Ocean

The Organic Carbon Cycle in the Arctic Ocean
Author: Rüdiger Stein
Publisher: Springer Science & Business Media
Total Pages: 394
Release: 2011-06-27
Genre: Science
ISBN: 3642189121


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The flux, preservation, and accumulation of organic carbon in marine systems are controlled by various mechanisms including primary p- duction of the surface water, supply of terrigenous organic matter from the surrounding continents, biogeochemical processes in the water column and at the seafloor, and sedimentation rate. For the world's oceans, phytoplankton productivity is by far the largest organic carbon 9 source, estimated to be about 30 to 50 Gt (10 tonnes) per year (Berger et al. 1989; Hedges and Keil 1995). By comparison, rivers contribute -1 about 0. 15 to 0. 23 Gt y of particulate organi.

Carbon Cycling on the Continental Margin Evidence from Sediment 14-C and Nutrient Elements. Progress Report, October 1992--October 1993

Carbon Cycling on the Continental Margin Evidence from Sediment 14-C and Nutrient Elements. Progress Report, October 1992--October 1993
Author:
Publisher:
Total Pages: 25
Release: 1993
Genre:
ISBN:


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This progress report discusses field equipment acquisition, fabrication, sample collection and sample analysis of sea bottom sediments. Investigators also discussed the Neuse River Estuary Experiment.

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 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.