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Titlebook: Blue Carbon; Coastal Sequestratio Daniel M. Alongi Book 2018 The Author(s) 2018 Blue carbon management.Blue Carbon field project.Climate Ad

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Undergraduate Texts in Mathematicscy framework that can deal with the management, conservation and financial issues arising from such a project. A network of demonstration projects is needed to show the viability of blue carbon and to work out in a practical way the problems and pitfalls of running a project. Blue carbon as a vehicl
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Seagrass Meadows,Pg C. for soils and 75.5 and 151 Tg C. for biomass. Assuming a soil profile one metre deep, the soil C. stock rises to between 5.8 and 9.8 Pg C.. Seagrass losses return to either the atmosphere or to the adjacent coastal ocean, or both, from 0.54 to 1.08 Pg CO. equivalents annually. This range is gr
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Book 2018bon‘ refers to the rates, pathways and volumes of greenhouse carbon sequestered in coastal estuarine and marine ecosystems such as salt marshes, mangroves and seagrass meadows. Blue carbon and its vital role in climate change mitigation are central to this book..Readers find summaries and analysis o
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https://doi.org/10.1057/978-1-137-36916-1carbon sequestration in REDD+ and other rehabilitation projects. There is a need for better understanding of the drivers affecting carbon sequestration and storage rates. A conceptual model of blue carbon is presented showing the major pathways of carbon flow in coastal ecosystems that lead to carbon sequestration and storage.
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Introduction,carbon sequestration in REDD+ and other rehabilitation projects. There is a need for better understanding of the drivers affecting carbon sequestration and storage rates. A conceptual model of blue carbon is presented showing the major pathways of carbon flow in coastal ecosystems that lead to carbon sequestration and storage.
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https://doi.org/10.1007/978-1-4612-0697-282.2 Mg C. ha. and a total global estimate of 1.2 Pg C.. On average, 99.2% of carbon is vested in soils and roots. The loss of carbon shifts marshes from net sinks to net sources of carbon for the atmosphere. Losses of salt marsh equate to 1.1 Pg CO. equivalents returned to the atmosphere or coastal ocean since the 1800s.
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