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Carbon Mineralization in Coastal Wetlands

Carbon Mineralization in Coastal Wetlands
Author: Xiaoguang Ouyang
Publisher: Elsevier
Total Pages: 332
Release: 2022-04-08
Genre: Science
ISBN: 0128192585

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Carbon Mineralization in Coastal Wetlands: From Litter Decomposition to Greenhouse Gas Dynamics fills the current knowledge gap in carbon mineralization, providing a balanced view of the carbon dynamics of coastal wetlands. This book provides a holistic treatment of carbon mineralization, from the contributions of litter/root decomposition pathways to carbon mineralization and the processes and sources of greenhouse gas production. This book compares carbon mineralization in coastal wetlands and highlights differences in carbon dynamics. As studies on blue carbon have strongly emphasized the storage potential of coastal wetlands, this book serves as an ideal resource on the topics discussed. Provides comprehensive perspectives on the processes and mechanisms of carbon mineralization in coastal wetlands Identifies factors regulating organic matter decomposition and greenhouse gas emission Clarifies the linkage between litter decomposition and greenhouse gas emission Unravels how greenhouse gas emissions are modified by anthropogenic activities, including eutrophication and deforestation


Carbon Sequestration in Tidal Salt Marshes and Mangrove Ecosystems

Carbon Sequestration in Tidal Salt Marshes and Mangrove Ecosystems
Author: Carlos E. Quintana Alcántara
Publisher: LAP Lambert Academic Publishing
Total Pages: 52
Release: 2014-10-15
Genre:
ISBN: 9783659610073

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Wetlands take part on the global carbon cycle holding organic carbon in biomass, soils and sediments. In recent year, researches worldwide have been investigated the wetland carbon sequestration capacity due to the increase of the concentrations of greenhouse gasses implicated in global warming and climate change such as carbon dioxide, methane and nitrous oxide in the atmosphere. This paper investigated the carbon sequestration capacity on coastal wetland ecosystems. Based on published studies conducted worldwide, this study also summarizes the environmental conditions and factors associated with carbon fixation, production and storage in tidal salt marshes and mangrove ecosystems. The results showed that coastal wetland ecosystems are significant carbon pool. Global estimations indicated that carbon storage in coastal wetland range from 0.4 to 8.9 Pg C (1 Pg = 1015g carbon). Environmental and hydrologic conditions including salinity gradients and tidal regimes play a crucial role in the biogeochemistry of carbon, methane and nitrous oxide on coastal wetlands. The overview about methane and nitrous oxide production and emission indicated that tidal salt marshes and mangrove


Biogeochemistry of Blue Carbon in Coastal Wetlands Under Rising Seas

Biogeochemistry of Blue Carbon in Coastal Wetlands Under Rising Seas
Author: Sean Fettrow
Publisher:
Total Pages: 0
Release: 2023
Genre:
ISBN:

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Taken together, our results help improve our understanding of coastal wetland blue C cycling under both current and future climate scenarios. These findings will be used to improve ecosystem vertical and lateral C flux estimates, better understand the underlying mechanisms controlling variability in C flux and C cycling and improve our understanding of how these ecosystems will function under increased inundation with SLR. These results can be further incorporated into Earth System Models (ESMs) to increase the predictive capacity of C feedback cycles and may also be used to improve policy aimed at protecting and restoring these critical natural ecosystems.


A Blue Carbon Primer

A Blue Carbon Primer
Author: Lisamarie Windham-Myers
Publisher:
Total Pages:
Release: 2019
Genre: SCIENCE
ISBN: 9781498769105

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Negative Emissions Technologies and Reliable Sequestration

Negative Emissions Technologies and Reliable Sequestration
Author: National Academies of Sciences, Engineering, and Medicine
Publisher: National Academies Press
Total Pages: 511
Release: 2019-04-08
Genre: Science
ISBN: 0309484529

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To achieve goals for climate and economic growth, "negative emissions technologies" (NETs) that remove and sequester carbon dioxide from the air will need to play a significant role in mitigating climate change. Unlike carbon capture and storage technologies that remove carbon dioxide emissions directly from large point sources such as coal power plants, NETs remove carbon dioxide directly from the atmosphere or enhance natural carbon sinks. Storing the carbon dioxide from NETs has the same impact on the atmosphere and climate as simultaneously preventing an equal amount of carbon dioxide from being emitted. Recent analyses found that deploying NETs may be less expensive and less disruptive than reducing some emissions, such as a substantial portion of agricultural and land-use emissions and some transportation emissions. In 2015, the National Academies published Climate Intervention: Carbon Dioxide Removal and Reliable Sequestration, which described and initially assessed NETs and sequestration technologies. This report acknowledged the relative paucity of research on NETs and recommended development of a research agenda that covers all aspects of NETs from fundamental science to full-scale deployment. To address this need, Negative Emissions Technologies and Reliable Sequestration: A Research Agenda assesses the benefits, risks, and "sustainable scale potential" for NETs and sequestration. This report also defines the essential components of a research and development program, including its estimated costs and potential impact.


Wetland Carbon and Environmental Management

Wetland Carbon and Environmental Management
Author: Ken W. Krauss
Publisher: John Wiley & Sons
Total Pages: 484
Release: 2021-11-23
Genre: Science
ISBN: 111963928X

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Explores how the management of wetlands can influence carbon storage and fluxes. Wetlands are vital natural assets, including their ability to take-up atmospheric carbon and restrict subsequent carbon loss to facilitate long-term storage. They can be deliberately managed to provide a natural solution to mitigate climate change, as well as to help offset direct losses of wetlands from various land-use changes and natural drivers. Wetland Carbon and Environmental Management presents a collection of wetland research studies from around the world to demonstrate how environmental management can improve carbon sequestration while enhancing wetland health and function. Volume highlights include: Overview of carbon storage in the landscape Introduction to wetland management practices Comparisons of natural, managed, and converted wetlands Impact of wetland management on carbon storage or loss Techniques for scientific assessment of wetland carbon processes Case studies covering tropical, coastal, inland, and northern wetlands Primer for carbon offset trading programs and how wetlands might contribute The American Geophysical Union promotes discovery in Earth and space science for the benefit of humanity.Its publications disseminate scientific knowledge and provide resources for researchers, students, and professionals.