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Practical Guide to Measuring Wetland Carbon Pools and Fluxes
Wetlands cover a small portion of the world, but have disproportionate influence on global carbon (C) sequestration, carbon dioxide and methane emissions, and aquatic C fluxes. However, the underlying biogeochemical processes that affect wetland C pools and fluxes are complex and dynamic, making mea...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Springer Netherlands
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10684704/ https://www.ncbi.nlm.nih.gov/pubmed/38037553 http://dx.doi.org/10.1007/s13157-023-01722-2 |
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author | Bansal, Sheel Creed, Irena F. Tangen, Brian A. Bridgham, Scott D. Desai, Ankur R. Krauss, Ken W. Neubauer, Scott C. Noe, Gregory B. Rosenberry, Donald O. Trettin, Carl Wickland, Kimberly P. Allen, Scott T. Arias-Ortiz, Ariane Armitage, Anna R. Baldocchi, Dennis Banerjee, Kakoli Bastviken, David Berg, Peter Bogard, Matthew J. Chow, Alex T. Conner, William H. Craft, Christopher Creamer, Courtney DelSontro, Tonya Duberstein, Jamie A. Eagle, Meagan Fennessy, M. Siobhan Finkelstein, Sarah A. Göckede, Mathias Grunwald, Sabine Halabisky, Meghan Herbert, Ellen Jahangir, Mohammad M. R. Johnson, Olivia F. Jones, Miriam C. Kelleway, Jeffrey J. Knox, Sara Kroeger, Kevin D. Kuehn, Kevin A. Lobb, David Loder, Amanda L. Ma, Shizhou Maher, Damien T. McNicol, Gavin Meier, Jacob Middleton, Beth A. Mills, Christopher Mistry, Purbasha Mitra, Abhijit Mobilian, Courtney Nahlik, Amanda M. Newman, Sue O’Connell, Jessica L. Oikawa, Patty van der Burg, Max Post Schutte, Charles A. Song, Changchun Stagg, Camille L. Turner, Jessica Vargas, Rodrigo Waldrop, Mark P. Wallin, Marcus B. Wang, Zhaohui Aleck Ward, Eric J. Willard, Debra A. Yarwood, Stephanie Zhu, Xiaoyan |
author_facet | Bansal, Sheel Creed, Irena F. Tangen, Brian A. Bridgham, Scott D. Desai, Ankur R. Krauss, Ken W. Neubauer, Scott C. Noe, Gregory B. Rosenberry, Donald O. Trettin, Carl Wickland, Kimberly P. Allen, Scott T. Arias-Ortiz, Ariane Armitage, Anna R. Baldocchi, Dennis Banerjee, Kakoli Bastviken, David Berg, Peter Bogard, Matthew J. Chow, Alex T. Conner, William H. Craft, Christopher Creamer, Courtney DelSontro, Tonya Duberstein, Jamie A. Eagle, Meagan Fennessy, M. Siobhan Finkelstein, Sarah A. Göckede, Mathias Grunwald, Sabine Halabisky, Meghan Herbert, Ellen Jahangir, Mohammad M. R. Johnson, Olivia F. Jones, Miriam C. Kelleway, Jeffrey J. Knox, Sara Kroeger, Kevin D. Kuehn, Kevin A. Lobb, David Loder, Amanda L. Ma, Shizhou Maher, Damien T. McNicol, Gavin Meier, Jacob Middleton, Beth A. Mills, Christopher Mistry, Purbasha Mitra, Abhijit Mobilian, Courtney Nahlik, Amanda M. Newman, Sue O’Connell, Jessica L. Oikawa, Patty van der Burg, Max Post Schutte, Charles A. Song, Changchun Stagg, Camille L. Turner, Jessica Vargas, Rodrigo Waldrop, Mark P. Wallin, Marcus B. Wang, Zhaohui Aleck Ward, Eric J. Willard, Debra A. Yarwood, Stephanie Zhu, Xiaoyan |
author_sort | Bansal, Sheel |
collection | PubMed |
description | Wetlands cover a small portion of the world, but have disproportionate influence on global carbon (C) sequestration, carbon dioxide and methane emissions, and aquatic C fluxes. However, the underlying biogeochemical processes that affect wetland C pools and fluxes are complex and dynamic, making measurements of wetland C challenging. Over decades of research, many observational, experimental, and analytical approaches have been developed to understand and quantify pools and fluxes of wetland C. Sampling approaches range in their representation of wetland C from short to long timeframes and local to landscape spatial scales. This review summarizes common and cutting-edge methodological approaches for quantifying wetland C pools and fluxes. We first define each of the major C pools and fluxes and provide rationale for their importance to wetland C dynamics. For each approach, we clarify what component of wetland C is measured and its spatial and temporal representativeness and constraints. We describe practical considerations for each approach, such as where and when an approach is typically used, who can conduct the measurements (expertise, training requirements), and how approaches are conducted, including considerations on equipment complexity and costs. Finally, we review key covariates and ancillary measurements that enhance the interpretation of findings and facilitate model development. The protocols that we describe to measure soil, water, vegetation, and gases are also relevant for related disciplines such as ecology. Improved quality and consistency of data collection and reporting across studies will help reduce global uncertainties and develop management strategies to use wetlands as nature-based climate solutions. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s13157-023-01722-2. |
format | Online Article Text |
id | pubmed-10684704 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Springer Netherlands |
record_format | MEDLINE/PubMed |
spelling | pubmed-106847042023-11-30 Practical Guide to Measuring Wetland Carbon Pools and Fluxes Bansal, Sheel Creed, Irena F. Tangen, Brian A. Bridgham, Scott D. Desai, Ankur R. Krauss, Ken W. Neubauer, Scott C. Noe, Gregory B. Rosenberry, Donald O. Trettin, Carl Wickland, Kimberly P. Allen, Scott T. Arias-Ortiz, Ariane Armitage, Anna R. Baldocchi, Dennis Banerjee, Kakoli Bastviken, David Berg, Peter Bogard, Matthew J. Chow, Alex T. Conner, William H. Craft, Christopher Creamer, Courtney DelSontro, Tonya Duberstein, Jamie A. Eagle, Meagan Fennessy, M. Siobhan Finkelstein, Sarah A. Göckede, Mathias Grunwald, Sabine Halabisky, Meghan Herbert, Ellen Jahangir, Mohammad M. R. Johnson, Olivia F. Jones, Miriam C. Kelleway, Jeffrey J. Knox, Sara Kroeger, Kevin D. Kuehn, Kevin A. Lobb, David Loder, Amanda L. Ma, Shizhou Maher, Damien T. McNicol, Gavin Meier, Jacob Middleton, Beth A. Mills, Christopher Mistry, Purbasha Mitra, Abhijit Mobilian, Courtney Nahlik, Amanda M. Newman, Sue O’Connell, Jessica L. Oikawa, Patty van der Burg, Max Post Schutte, Charles A. Song, Changchun Stagg, Camille L. Turner, Jessica Vargas, Rodrigo Waldrop, Mark P. Wallin, Marcus B. Wang, Zhaohui Aleck Ward, Eric J. Willard, Debra A. Yarwood, Stephanie Zhu, Xiaoyan Wetlands (Wilmington) Mark Brinson Review Wetlands cover a small portion of the world, but have disproportionate influence on global carbon (C) sequestration, carbon dioxide and methane emissions, and aquatic C fluxes. However, the underlying biogeochemical processes that affect wetland C pools and fluxes are complex and dynamic, making measurements of wetland C challenging. Over decades of research, many observational, experimental, and analytical approaches have been developed to understand and quantify pools and fluxes of wetland C. Sampling approaches range in their representation of wetland C from short to long timeframes and local to landscape spatial scales. This review summarizes common and cutting-edge methodological approaches for quantifying wetland C pools and fluxes. We first define each of the major C pools and fluxes and provide rationale for their importance to wetland C dynamics. For each approach, we clarify what component of wetland C is measured and its spatial and temporal representativeness and constraints. We describe practical considerations for each approach, such as where and when an approach is typically used, who can conduct the measurements (expertise, training requirements), and how approaches are conducted, including considerations on equipment complexity and costs. Finally, we review key covariates and ancillary measurements that enhance the interpretation of findings and facilitate model development. The protocols that we describe to measure soil, water, vegetation, and gases are also relevant for related disciplines such as ecology. Improved quality and consistency of data collection and reporting across studies will help reduce global uncertainties and develop management strategies to use wetlands as nature-based climate solutions. SUPPLEMENTARY INFORMATION: The online version contains supplementary material available at 10.1007/s13157-023-01722-2. Springer Netherlands 2023-11-28 2023 /pmc/articles/PMC10684704/ /pubmed/38037553 http://dx.doi.org/10.1007/s13157-023-01722-2 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Mark Brinson Review Bansal, Sheel Creed, Irena F. Tangen, Brian A. Bridgham, Scott D. Desai, Ankur R. Krauss, Ken W. Neubauer, Scott C. Noe, Gregory B. Rosenberry, Donald O. Trettin, Carl Wickland, Kimberly P. Allen, Scott T. Arias-Ortiz, Ariane Armitage, Anna R. Baldocchi, Dennis Banerjee, Kakoli Bastviken, David Berg, Peter Bogard, Matthew J. Chow, Alex T. Conner, William H. Craft, Christopher Creamer, Courtney DelSontro, Tonya Duberstein, Jamie A. Eagle, Meagan Fennessy, M. Siobhan Finkelstein, Sarah A. Göckede, Mathias Grunwald, Sabine Halabisky, Meghan Herbert, Ellen Jahangir, Mohammad M. R. Johnson, Olivia F. Jones, Miriam C. Kelleway, Jeffrey J. Knox, Sara Kroeger, Kevin D. Kuehn, Kevin A. Lobb, David Loder, Amanda L. Ma, Shizhou Maher, Damien T. McNicol, Gavin Meier, Jacob Middleton, Beth A. Mills, Christopher Mistry, Purbasha Mitra, Abhijit Mobilian, Courtney Nahlik, Amanda M. Newman, Sue O’Connell, Jessica L. Oikawa, Patty van der Burg, Max Post Schutte, Charles A. Song, Changchun Stagg, Camille L. Turner, Jessica Vargas, Rodrigo Waldrop, Mark P. Wallin, Marcus B. Wang, Zhaohui Aleck Ward, Eric J. Willard, Debra A. Yarwood, Stephanie Zhu, Xiaoyan Practical Guide to Measuring Wetland Carbon Pools and Fluxes |
title | Practical Guide to Measuring Wetland Carbon Pools and Fluxes |
title_full | Practical Guide to Measuring Wetland Carbon Pools and Fluxes |
title_fullStr | Practical Guide to Measuring Wetland Carbon Pools and Fluxes |
title_full_unstemmed | Practical Guide to Measuring Wetland Carbon Pools and Fluxes |
title_short | Practical Guide to Measuring Wetland Carbon Pools and Fluxes |
title_sort | practical guide to measuring wetland carbon pools and fluxes |
topic | Mark Brinson Review |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10684704/ https://www.ncbi.nlm.nih.gov/pubmed/38037553 http://dx.doi.org/10.1007/s13157-023-01722-2 |
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