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Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States)

Mangroves sequester significant quantities of organic carbon (C) because of high rates of burial in the soil and storage in biomass. We estimated mangrove forest C storage and accumulation rates in aboveground and belowground components among five sites along an urbanization gradient in the San Juan...

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Autores principales: Wigand, Cathleen, Eagle, Meagan, Branoff, Benjamin L., Balogh, Stephen, Miller, Kenneth M., Martin, Rose M., Hanson, Alana, Oczkowski, Autumn J., Huertas, Evelyn, Loffredo, Joseph, Watson, Elizabeth B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8809366/
https://www.ncbi.nlm.nih.gov/pubmed/35118374
http://dx.doi.org/10.3389/ffgc.2021.676691
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author Wigand, Cathleen
Eagle, Meagan
Branoff, Benjamin L.
Balogh, Stephen
Miller, Kenneth M.
Martin, Rose M.
Hanson, Alana
Oczkowski, Autumn J.
Huertas, Evelyn
Loffredo, Joseph
Watson, Elizabeth B.
author_facet Wigand, Cathleen
Eagle, Meagan
Branoff, Benjamin L.
Balogh, Stephen
Miller, Kenneth M.
Martin, Rose M.
Hanson, Alana
Oczkowski, Autumn J.
Huertas, Evelyn
Loffredo, Joseph
Watson, Elizabeth B.
author_sort Wigand, Cathleen
collection PubMed
description Mangroves sequester significant quantities of organic carbon (C) because of high rates of burial in the soil and storage in biomass. We estimated mangrove forest C storage and accumulation rates in aboveground and belowground components among five sites along an urbanization gradient in the San Juan Bay Estuary, Puerto Rico. Sites included the highly urbanized and clogged Caño Martin Peña in the western half of the estuary, a series of lagoons in the center of the estuary, and a tropical forest reserve (Piñones) in the easternmost part. Radiometrically dated cores were used to determine sediment accretion and soil C storage and burial rates. Measurements of tree dendrometers coupled with allometric equations were used to estimate aboveground biomass. Estuary-wide mangrove forest C storage and accumulation rates were estimated using interpolation methods and coastal vegetation cover data. In recent decades (1970–2016), the highly urbanized Martin Peña East (MPE) site with low flushing had the highest C storage and burial rates among sites. The MPE soil carbon burial rate was over twice as great as global estimates. Mangrove forest C burial rates in recent decades were significantly greater than historic decades (1930–1970) at Cañno Martin Peña and Piñones. Although MPE and Piñones had similarly low flushing, the landscape settings (clogged canal vs forest reserve) and urbanization (high vs low) were different. Apparently, not only urbanization, but site-specific flushing patterns, landscape setting, and soil fertility affected soil C storage and burial rates. There was no difference in C burial rates between historic and recent decades at the San José and La Torrecilla lagoons. Mangrove forests had soil C burial rates ranging from 88 g m(−2) y(−1) at the San José lagoon to 469 g m(−2) y(−1) at the MPE in recent decades. Watershed anthropogenic CO(2) emissions (1.56 million Mg C y(−1)) far exceeded the annual mangrove forest C storage rates (aboveground biomass plus soils: 17,713 Mg C y(−1)). A combination of maintaining healthy mangrove forests and reducing anthropogenic emissions might be necessary to mitigate greenhouse gas emissions in urban, tropical areas.
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spelling pubmed-88093662022-02-02 Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States) Wigand, Cathleen Eagle, Meagan Branoff, Benjamin L. Balogh, Stephen Miller, Kenneth M. Martin, Rose M. Hanson, Alana Oczkowski, Autumn J. Huertas, Evelyn Loffredo, Joseph Watson, Elizabeth B. Front For Glob Change Article Mangroves sequester significant quantities of organic carbon (C) because of high rates of burial in the soil and storage in biomass. We estimated mangrove forest C storage and accumulation rates in aboveground and belowground components among five sites along an urbanization gradient in the San Juan Bay Estuary, Puerto Rico. Sites included the highly urbanized and clogged Caño Martin Peña in the western half of the estuary, a series of lagoons in the center of the estuary, and a tropical forest reserve (Piñones) in the easternmost part. Radiometrically dated cores were used to determine sediment accretion and soil C storage and burial rates. Measurements of tree dendrometers coupled with allometric equations were used to estimate aboveground biomass. Estuary-wide mangrove forest C storage and accumulation rates were estimated using interpolation methods and coastal vegetation cover data. In recent decades (1970–2016), the highly urbanized Martin Peña East (MPE) site with low flushing had the highest C storage and burial rates among sites. The MPE soil carbon burial rate was over twice as great as global estimates. Mangrove forest C burial rates in recent decades were significantly greater than historic decades (1930–1970) at Cañno Martin Peña and Piñones. Although MPE and Piñones had similarly low flushing, the landscape settings (clogged canal vs forest reserve) and urbanization (high vs low) were different. Apparently, not only urbanization, but site-specific flushing patterns, landscape setting, and soil fertility affected soil C storage and burial rates. There was no difference in C burial rates between historic and recent decades at the San José and La Torrecilla lagoons. Mangrove forests had soil C burial rates ranging from 88 g m(−2) y(−1) at the San José lagoon to 469 g m(−2) y(−1) at the MPE in recent decades. Watershed anthropogenic CO(2) emissions (1.56 million Mg C y(−1)) far exceeded the annual mangrove forest C storage rates (aboveground biomass plus soils: 17,713 Mg C y(−1)). A combination of maintaining healthy mangrove forests and reducing anthropogenic emissions might be necessary to mitigate greenhouse gas emissions in urban, tropical areas. 2021-06-07 /pmc/articles/PMC8809366/ /pubmed/35118374 http://dx.doi.org/10.3389/ffgc.2021.676691 Text en https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY) (https://creativecommons.org/licenses/by/4.0/) . The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Article
Wigand, Cathleen
Eagle, Meagan
Branoff, Benjamin L.
Balogh, Stephen
Miller, Kenneth M.
Martin, Rose M.
Hanson, Alana
Oczkowski, Autumn J.
Huertas, Evelyn
Loffredo, Joseph
Watson, Elizabeth B.
Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States)
title Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States)
title_full Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States)
title_fullStr Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States)
title_full_unstemmed Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States)
title_short Recent Carbon Storage and Burial Exceed Historic Rates in the San Juan Bay Estuary Peri-Urban Mangrove Forests (Puerto Rico, United States)
title_sort recent carbon storage and burial exceed historic rates in the san juan bay estuary peri-urban mangrove forests (puerto rico, united states)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8809366/
https://www.ncbi.nlm.nih.gov/pubmed/35118374
http://dx.doi.org/10.3389/ffgc.2021.676691
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