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description Publicationkeyboard_double_arrow_right Article , Other literature type 2023 Sweden, Australia, United States, AustraliaPublisher:Springer Science and Business Media LLC Publicly fundedFunded by:NSERC, EC | METLAKE, NSF | Graduate Research Fellows...NSERC ,EC| METLAKE ,NSF| Graduate Research Fellowship Program (GRFP)Sheel Bansal; Irena F. Creed; Brian A. Tangen; Scott D. Bridgham; Ankur R. Desai; Ken W. Krauss; Scott C. Neubauer; Gregory B. Noe; Donald O. Rosenberry; Carl Trettin; Kimberly P. Wickland; Scott T. Allen; Ariane Arias‐Ortiz; Anna R. Armitage; Dennis Baldocchi; Kakoli Banerjee; David Bastviken; Peter Berg; Matthew J. Bogard; Alex T. Chow; William H. Conner; Christopher Craft; Courtney A. Creamer; Tonya DelSontro; Jamie A. Duberstein; M. E. Gonneea; M. Siobhan Fennessy; Sarah A. Finkelstein; Mathias Goeckede; Sabine Grunwald; Meghan Halabisky; Ellen R. Herbert; M. M. R. Jahangir; Olivia F. Johnson; Miriam C. Jones; Jeffrey J. Kelleway; Sara Knox; Kevin D. Kroeger; Kevin A. Kuehn; David A. Lobb; Amanda L. Loder; Shizhou Ma; Damien T. Maher; Gavin McNicol; Jacob Meier; Beth A. Middleton; Christopher T. Mills; Purbasha Mistry; Abhijit Mitra; Courtney Mobilian; Amanda M. Nahlik; Susan Newman; Jessica L. O'Connell; Patricia Y. Oikawa; Max Post van der Burg; Charles A. Schutte; Chunqiao Song; Camille L. Stagg; Jess Turner; Rodrigo Vargas; Mark P. Waldrop; Marcus B. Wallin; Zhaohui Aleck Wang; Eric J. Ward; Debra A. Willard; Stephanie A. Yarwood; Xianghong Zhu;pmid: 38037553
pmc: PMC10684704
AbstractWetlands 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.
University of Califo... arrow_drop_down University of California: eScholarshipArticle . 2023License: CC BYFull-Text: https://escholarship.org/uc/item/15b835k7Data sources: Bielefeld Academic Search Engine (BASE)Publikationer från Linköpings universitetArticle . 2023 . Peer-reviewedData sources: Publikationer från Linköpings universiteteScholarship - University of CaliforniaArticle . 2023Data sources: eScholarship - University of CaliforniaUniversity of Wollongong, Australia: Research OnlineArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 23 citations 23 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert University of Califo... arrow_drop_down University of California: eScholarshipArticle . 2023License: CC BYFull-Text: https://escholarship.org/uc/item/15b835k7Data sources: Bielefeld Academic Search Engine (BASE)Publikationer från Linköpings universitetArticle . 2023 . Peer-reviewedData sources: Publikationer från Linköpings universiteteScholarship - University of CaliforniaArticle . 2023Data sources: eScholarship - University of CaliforniaUniversity of Wollongong, Australia: Research OnlineArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1007/s13157-023-01722-2&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2018 Australia, Sweden, United Kingdom, Ireland, Netherlands, France, Australia, France, France, France, France, France, SwitzerlandPublisher:Springer Science and Business Media LLC Publicly fundedFunded by:UKRI | Peatlands and the global ...UKRI| Peatlands and the global Carbon cycle during the past millennium: a global assessment using observations and modelsAtte Korhola; Tatiana Blyakharchuk; Miriam C. Jones; Michael J. Clifford; Pierre Friedlingstein; Charly Massa; Paul Mathijssen; Eric S. Klein; Yan Zhao; Sarah A. Finkelstein; Jonathan E. Nichols; Gabriel Magnan; Rob Marchant; Fraser J.G. Mitchell; Philip Camill; Tim Mighall; Maara S. Packalen; David W. Beilman; Steve Moreton; Terri Lacourse; D. Mauquoy; James R. Holmquist; T. Edward Turner; T. Edward Turner; Lisa C. Orme; Lisa C. Orme; Susan Page; Chris D. Jones; Glen M. MacDonald; Svante Björck; A. Britta K. Sannel; Ulla Kokfelt; Helen Mackay; Nicole K. Sanderson; Antonio Martínez Cortizas; Mariusz Lamentowicz; I. Colin Prentice; Esther Githumbi; Joana Zaragoza-Castells; Robert K. Booth; Edgar Karofeld; Julie Loisel; Colin J Courtney-Mustaphi; Colin J Courtney-Mustaphi; Bas van Geel; Graeme T. Swindles; Angela V. Gallego-Sala; Joan Bunbury; François De Vleeschouwer; Dan J. Charman; Joanna Uglow; David Large; Stephen Robinson; Natascha Steinberg; Minna Väliranta; Donna Carless; Michelle Garneau; Guoping Wang; Markku Mäkilä; Thomas P. Roland; Simon van Bellen; Katarzyna Marcisz; Katarzyna Marcisz; Barbara Fiałkiewicz-Kozieł; Pirita Oksanen; Rixt de Jong; Elizabeth L. Cressey; Marjolein van der Linden; Christopher Bochicchio; Zicheng Yu; Zicheng Yu; John Hribjlan; Paul D.M. Hughes; Patrick Moss; Martin Lavoie; Simon Brewer; Rodney A. Chimner; Matthew J. Amesbury; Noemí Silva-Sánchez; Gaël Le Roux;The carbon sink potential of peatlands depends on the balance of carbon uptake by plants and microbial decomposition. The rates of both these processes will increase with warming but it remains unclear which will dominate the global peatland response. Here we examine the global relationship between peatland carbon accumulation rates during the last millennium and planetary-scale climate space. A positive relationship is found between carbon accumulation and cumulative photosynthetically active radiation during the growing season for mid- to high-latitude peatlands in both hemispheres. However, this relationship reverses at lower latitudes, suggesting that carbon accumulation is lower under the warmest climate regimes. Projections under Representative Concentration Pathway (RCP)2.6 and RCP8.5 scenarios indicate that the present-day global sink will increase slightly until around AD 2100 but decline thereafter. Peatlands will remain a carbon sink in the future, but their response to warming switches from a negative to a positive climate feedback (decreased carbon sink with warming) at the end of the twenty-first century.
CORE arrow_drop_down EnlightenArticle . 2018Full-Text: http://eprints.gla.ac.uk/168775/1/168775.pdfData sources: CORE (RIOXX-UK Aggregator)Open Archive Toulouse Archive OuverteArticle . 2018 . Peer-reviewedData sources: Open Archive Toulouse Archive OuverteInstitut National Polytechnique de Toulouse (Theses)Article . 2018 . Peer-reviewedData sources: Institut National Polytechnique de Toulouse (Theses)MURAL - Maynooth University Research Archive LibraryArticle . 2018 . Peer-reviewedLicense: CC BY NC SAData sources: MURAL - Maynooth University Research Archive LibraryOATAO (Open Archive Toulouse Archive Ouverte - Université de Toulouse)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Spiral - Imperial College Digital RepositoryArticle . 2018Data sources: Spiral - Imperial College Digital RepositoryPublikationer från Uppsala UniversitetArticle . 2018 . Peer-reviewedData sources: Publikationer från Uppsala UniversitetDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2018 . Peer-reviewedUniversité de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Nature Climate ChangeArticle . 2018Data sources: Universiteit van Amsterdam Digital Academic RepositoryAberdeen University Research Archive (AURA)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Queensland University of Technology: QUT ePrintsArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Newcastle University Library ePrints ServiceArticleData sources: Bielefeld Academic Search Engine (BASE)The University of Queensland: UQ eSpaceArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen bronze 218 citations 218 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
visibility 33visibility views 33 download downloads 22 Powered bymore_vert CORE arrow_drop_down EnlightenArticle . 2018Full-Text: http://eprints.gla.ac.uk/168775/1/168775.pdfData sources: CORE (RIOXX-UK Aggregator)Open Archive Toulouse Archive OuverteArticle . 2018 . Peer-reviewedData sources: Open Archive Toulouse Archive OuverteInstitut National Polytechnique de Toulouse (Theses)Article . 2018 . Peer-reviewedData sources: Institut National Polytechnique de Toulouse (Theses)MURAL - Maynooth University Research Archive LibraryArticle . 2018 . Peer-reviewedLicense: CC BY NC SAData sources: MURAL - Maynooth University Research Archive LibraryOATAO (Open Archive Toulouse Archive Ouverte - Université de Toulouse)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Spiral - Imperial College Digital RepositoryArticle . 2018Data sources: Spiral - Imperial College Digital RepositoryPublikationer från Uppsala UniversitetArticle . 2018 . Peer-reviewedData sources: Publikationer från Uppsala UniversitetDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2018 . Peer-reviewedUniversité de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Nature Climate ChangeArticle . 2018Data sources: Universiteit van Amsterdam Digital Academic RepositoryAberdeen University Research Archive (AURA)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Queensland University of Technology: QUT ePrintsArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Newcastle University Library ePrints ServiceArticleData sources: Bielefeld Academic Search Engine (BASE)The University of Queensland: UQ eSpaceArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41558-018-0271-1&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Conference object , Other literature type 2022 Finland, United Kingdom, United KingdomPublisher:Springer Science and Business Media LLC Funded by:NSERC, UKRI | NERC Science @ Leeds and ..., RSF | Microorganisms, ecosystem...NSERC ,UKRI| NERC Science @ Leeds and York - Site for PhD Training in Environmental Research (SPHERES) ,RSF| Microorganisms, ecosystems and climate: factors affecting recent assemblages and reconstructions of ecosystems and environment dynamics during the HoloceneHui Zhang; Minna Väliranta; Graeme T. Swindles; Marco A. Aquino-López; Donal Mullan; Ning Tan; Matthew Amesbury; Kirill V. Babeshko; Kunshan Bao; Anatoly Bobrov; Viktor Chernyshov; Marissa A. Davies; Andrei-Cosmin Diaconu; Angelica Feurdean; Sarah A. Finkelstein; Michelle Garneau; Zhengtang Guo; Miriam C. Jones; Martin Kay; Eric S. Klein; Mariusz Lamentowicz; Gabriel Magnan; Katarzyna Marcisz; Natalia Mazei; Yuri Mazei; Richard Payne; Nicolas Pelletier; Sanna R. Piilo; Steve Pratte; Thomas Roland; Damir Saldaev; William Shotyk; Thomas G. Sim; Thomas J. Sloan; Michał Słowiński; Julie Talbot; Liam Taylor; Andrey N. Tsyganov; Sebastian Wetterich; Wei Xing; Yan Zhao;AbstractHigh-latitude peatlands are changing rapidly in response to climate change, including permafrost thaw. Here, we reconstruct hydrological conditions since the seventeenth century using testate amoeba data from 103 high-latitude peat archives. We show that 54% of the peatlands have been drying and 32% have been wetting over this period, illustrating the complex ecohydrological dynamics of high latitude peatlands and their highly uncertain responses to a warming climate.
CORE arrow_drop_down Open Research ExeterArticle . 2022License: CC BYFull-Text: https://www.ncbi.nlm.nih.gov/pubmed/36002465Data sources: Bielefeld Academic Search Engine (BASE)HELDA - Digital Repository of the University of HelsinkiArticle . 2022 . Peer-reviewedData sources: HELDA - Digital Repository of the University of HelsinkiQueen's University Belfast Research PortalArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41467-022-32711-4&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 35 citations 35 popularity Top 10% influence Average impulse Top 1% Powered by BIP!
more_vert CORE arrow_drop_down Open Research ExeterArticle . 2022License: CC BYFull-Text: https://www.ncbi.nlm.nih.gov/pubmed/36002465Data sources: Bielefeld Academic Search Engine (BASE)HELDA - Digital Repository of the University of HelsinkiArticle . 2022 . Peer-reviewedData sources: HELDA - Digital Repository of the University of HelsinkiQueen's University Belfast Research PortalArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41467-022-32711-4&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type , Journal 2018Publisher:Public Library of Science (PLoS) Funded by:NSERCNSERCAuthors: Magdalena K. Sobol; Sarah A. Finkelstein;This paper investigates suitability of supervised machine learning classification methods for classification of biomes using pollen datasets. We assign modern pollen samples from Africa and Arabia to five biome classes using a previously published African pollen dataset and a global ecosystem classification scheme. To test the applicability of traditional and machine-learning based classification models for the task of biome prediction from high dimensional modern pollen data, we train a total of eight classification models, including Linear Discriminant Analysis, Logistic Regression, Naïve Bayes, K-Nearest Neighbors, Classification Decision Tree, Random Forest, Neural Network, and Support Vector Machine. The ability of each model to predict biomes from pollen data is statistically tested on an independent test set. The Random Forest classifier outperforms other models in its ability correctly classify biomes given pollen data. Out of the eight models, the Random Forest classifier scores highest on all of the metrics used for model evaluations and is able to predict four out of five biome classes to high degree of accuracy, including arid, montane, tropical and subtropical closed and open systems, e.g. forests and savanna/grassland. The model has the potential for accurate reconstructions of past biomes and awaits application to fossil pollen sequences. The Random Forest model may be used to investigate vegetation changes on both long and short time scales, e.g. during glacial and interglacial cycles, or more recent and abrupt climatic anomalies like the African Humid Period. Such applications may contribute to a better understanding of past shifts in vegetation cover and ultimately provide valuable information on drivers of climate change.
add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1371/journal.pone.0202214&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 22 citations 22 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1371/journal.pone.0202214&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2014 United Kingdom, United States, United Kingdom, Denmark, Finland, Netherlands, United Kingdom, United StatesPublisher:SAGE Publications Funded by:SNSF | PAGES International Proje...SNSF| PAGES International Project OfficeLoisel, J.; Yu, Z.; Beilman, D. W.; Camill, P.; Alm, J.; Amesbury, M. J.; Anderson, D.; Andersson, S.; Bochicchio, C.; Barber, K.; Belyea, L. R.; Bunbury, J.; Chambers, Frank M; Charman, D. J.; De Vleeschouwer, F.; Fia kiewicz-Kozie, B.; Finkelstein, S. A.; Ga ka, M.; Garneau, M.; Hammarlund, D.; Hinchcliffe, W.; Holmquist, J.; Hughes, P.; Jones, M. C.; Klein, E. S.; Kokfelt, U.; Korhola, A.; Kuhry, P.; Lamarre, A.; Lamentowicz, M.; Large, D.; Lavoie, M.; MacDonald, G.; Magnan, G.; Makila, M.; Mallon, G.; Mathijssen, P.; Mauquoy, D.; McCarroll, Julia; Moore, T. R.; Nichols, J.; O'Reilly, B.; Oksanen, P.; Packalen, M.; Peteet, D.; Richard, P. J.; Robinson, S.; Ronkainen, T.; Rundgren, M.; Sannel, A. B. K.; Tarnocai, C.; Thom, T.; Tuittila, E.-S.; Turetsky, M.; Valiranta, M.; van der Linden, M.; van Geel, B.; van Bellen, S.; Vitt, D.; Zhao, Y.; Zhou, W.;handle: 11245/1.430387
Here, we present results from the most comprehensive compilation of Holocene peat soil properties with associated carbon and nitrogen accumulation rates for northern peatlands. Our database consists of 268 peat cores from 215 sites located north of 45°N. It encompasses regions within which peat carbon data have only recently become available, such as the West Siberia Lowlands, the Hudson Bay Lowlands, Kamchatka in Far East Russia, and the Tibetan Plateau. For all northern peatlands, carbon content in organic matter was estimated at 42 ± 3% (standard deviation) for Sphagnum peat, 51 ± 2% for non- Sphagnum peat, and at 49 ± 2% overall. Dry bulk density averaged 0.12 ± 0.07 g/cm3, organic matter bulk density averaged 0.11 ± 0.05 g/cm3, and total carbon content in peat averaged 47 ± 6%. In general, large differences were found between Sphagnum and non- Sphagnum peat types in terms of peat properties. Time-weighted peat carbon accumulation rates averaged 23 ± 2 (standard error of mean) g C/m2/yr during the Holocene on the basis of 151 peat cores from 127 sites, with the highest rates of carbon accumulation (25–28 g C/m2/yr) recorded during the early Holocene when the climate was warmer than the present. Furthermore, we estimate the northern peatland carbon and nitrogen pools at 436 and 10 gigatons, respectively. The database is publicly available at https://peatlands.lehigh.edu .
The Holocene arrow_drop_down University of Copenhagen: ResearchArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2014Data sources: Bielefeld Academic Search Engine (BASE)Natural Resources Institute Finland: JukuriArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Bowdoin College: Bowdoin Digital CommonsArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen bronze 439 citations 439 popularity Top 0.1% influence Top 1% impulse Top 0.1% Powered by BIP!
more_vert The Holocene arrow_drop_down University of Copenhagen: ResearchArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2014Data sources: Bielefeld Academic Search Engine (BASE)Natural Resources Institute Finland: JukuriArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Bowdoin College: Bowdoin Digital CommonsArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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description Publicationkeyboard_double_arrow_right Article , Other literature type 2023 Sweden, Australia, United States, AustraliaPublisher:Springer Science and Business Media LLC Publicly fundedFunded by:NSERC, EC | METLAKE, NSF | Graduate Research Fellows...NSERC ,EC| METLAKE ,NSF| Graduate Research Fellowship Program (GRFP)Sheel Bansal; Irena F. Creed; Brian A. Tangen; Scott D. Bridgham; Ankur R. Desai; Ken W. Krauss; Scott C. Neubauer; Gregory B. Noe; Donald O. Rosenberry; Carl Trettin; Kimberly P. Wickland; Scott T. Allen; Ariane Arias‐Ortiz; Anna R. Armitage; Dennis Baldocchi; Kakoli Banerjee; David Bastviken; Peter Berg; Matthew J. Bogard; Alex T. Chow; William H. Conner; Christopher Craft; Courtney A. Creamer; Tonya DelSontro; Jamie A. Duberstein; M. E. Gonneea; M. Siobhan Fennessy; Sarah A. Finkelstein; Mathias Goeckede; Sabine Grunwald; Meghan Halabisky; Ellen R. Herbert; M. M. R. Jahangir; Olivia F. Johnson; Miriam C. Jones; Jeffrey J. Kelleway; Sara Knox; Kevin D. Kroeger; Kevin A. Kuehn; David A. Lobb; Amanda L. Loder; Shizhou Ma; Damien T. Maher; Gavin McNicol; Jacob Meier; Beth A. Middleton; Christopher T. Mills; Purbasha Mistry; Abhijit Mitra; Courtney Mobilian; Amanda M. Nahlik; Susan Newman; Jessica L. O'Connell; Patricia Y. Oikawa; Max Post van der Burg; Charles A. Schutte; Chunqiao Song; Camille L. Stagg; Jess Turner; Rodrigo Vargas; Mark P. Waldrop; Marcus B. Wallin; Zhaohui Aleck Wang; Eric J. Ward; Debra A. Willard; Stephanie A. Yarwood; Xianghong Zhu;pmid: 38037553
pmc: PMC10684704
AbstractWetlands 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.
University of Califo... arrow_drop_down University of California: eScholarshipArticle . 2023License: CC BYFull-Text: https://escholarship.org/uc/item/15b835k7Data sources: Bielefeld Academic Search Engine (BASE)Publikationer från Linköpings universitetArticle . 2023 . Peer-reviewedData sources: Publikationer från Linköpings universiteteScholarship - University of CaliforniaArticle . 2023Data sources: eScholarship - University of CaliforniaUniversity of Wollongong, Australia: Research OnlineArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen hybrid 23 citations 23 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert University of Califo... arrow_drop_down University of California: eScholarshipArticle . 2023License: CC BYFull-Text: https://escholarship.org/uc/item/15b835k7Data sources: Bielefeld Academic Search Engine (BASE)Publikationer från Linköpings universitetArticle . 2023 . Peer-reviewedData sources: Publikationer från Linköpings universiteteScholarship - University of CaliforniaArticle . 2023Data sources: eScholarship - University of CaliforniaUniversity of Wollongong, Australia: Research OnlineArticle . 2023Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2018 Australia, Sweden, United Kingdom, Ireland, Netherlands, France, Australia, France, France, France, France, France, SwitzerlandPublisher:Springer Science and Business Media LLC Publicly fundedFunded by:UKRI | Peatlands and the global ...UKRI| Peatlands and the global Carbon cycle during the past millennium: a global assessment using observations and modelsAtte Korhola; Tatiana Blyakharchuk; Miriam C. Jones; Michael J. Clifford; Pierre Friedlingstein; Charly Massa; Paul Mathijssen; Eric S. Klein; Yan Zhao; Sarah A. Finkelstein; Jonathan E. Nichols; Gabriel Magnan; Rob Marchant; Fraser J.G. Mitchell; Philip Camill; Tim Mighall; Maara S. Packalen; David W. Beilman; Steve Moreton; Terri Lacourse; D. Mauquoy; James R. Holmquist; T. Edward Turner; T. Edward Turner; Lisa C. Orme; Lisa C. Orme; Susan Page; Chris D. Jones; Glen M. MacDonald; Svante Björck; A. Britta K. Sannel; Ulla Kokfelt; Helen Mackay; Nicole K. Sanderson; Antonio Martínez Cortizas; Mariusz Lamentowicz; I. Colin Prentice; Esther Githumbi; Joana Zaragoza-Castells; Robert K. Booth; Edgar Karofeld; Julie Loisel; Colin J Courtney-Mustaphi; Colin J Courtney-Mustaphi; Bas van Geel; Graeme T. Swindles; Angela V. Gallego-Sala; Joan Bunbury; François De Vleeschouwer; Dan J. Charman; Joanna Uglow; David Large; Stephen Robinson; Natascha Steinberg; Minna Väliranta; Donna Carless; Michelle Garneau; Guoping Wang; Markku Mäkilä; Thomas P. Roland; Simon van Bellen; Katarzyna Marcisz; Katarzyna Marcisz; Barbara Fiałkiewicz-Kozieł; Pirita Oksanen; Rixt de Jong; Elizabeth L. Cressey; Marjolein van der Linden; Christopher Bochicchio; Zicheng Yu; Zicheng Yu; John Hribjlan; Paul D.M. Hughes; Patrick Moss; Martin Lavoie; Simon Brewer; Rodney A. Chimner; Matthew J. Amesbury; Noemí Silva-Sánchez; Gaël Le Roux;The carbon sink potential of peatlands depends on the balance of carbon uptake by plants and microbial decomposition. The rates of both these processes will increase with warming but it remains unclear which will dominate the global peatland response. Here we examine the global relationship between peatland carbon accumulation rates during the last millennium and planetary-scale climate space. A positive relationship is found between carbon accumulation and cumulative photosynthetically active radiation during the growing season for mid- to high-latitude peatlands in both hemispheres. However, this relationship reverses at lower latitudes, suggesting that carbon accumulation is lower under the warmest climate regimes. Projections under Representative Concentration Pathway (RCP)2.6 and RCP8.5 scenarios indicate that the present-day global sink will increase slightly until around AD 2100 but decline thereafter. Peatlands will remain a carbon sink in the future, but their response to warming switches from a negative to a positive climate feedback (decreased carbon sink with warming) at the end of the twenty-first century.
CORE arrow_drop_down EnlightenArticle . 2018Full-Text: http://eprints.gla.ac.uk/168775/1/168775.pdfData sources: CORE (RIOXX-UK Aggregator)Open Archive Toulouse Archive OuverteArticle . 2018 . Peer-reviewedData sources: Open Archive Toulouse Archive OuverteInstitut National Polytechnique de Toulouse (Theses)Article . 2018 . Peer-reviewedData sources: Institut National Polytechnique de Toulouse (Theses)MURAL - Maynooth University Research Archive LibraryArticle . 2018 . Peer-reviewedLicense: CC BY NC SAData sources: MURAL - Maynooth University Research Archive LibraryOATAO (Open Archive Toulouse Archive Ouverte - Université de Toulouse)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Spiral - Imperial College Digital RepositoryArticle . 2018Data sources: Spiral - Imperial College Digital RepositoryPublikationer från Uppsala UniversitetArticle . 2018 . Peer-reviewedData sources: Publikationer från Uppsala UniversitetDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2018 . Peer-reviewedUniversité de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Nature Climate ChangeArticle . 2018Data sources: Universiteit van Amsterdam Digital Academic RepositoryAberdeen University Research Archive (AURA)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Queensland University of Technology: QUT ePrintsArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Newcastle University Library ePrints ServiceArticleData sources: Bielefeld Academic Search Engine (BASE)The University of Queensland: UQ eSpaceArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen bronze 218 citations 218 popularity Top 1% influence Top 10% impulse Top 1% Powered by BIP!
visibility 33visibility views 33 download downloads 22 Powered bymore_vert CORE arrow_drop_down EnlightenArticle . 2018Full-Text: http://eprints.gla.ac.uk/168775/1/168775.pdfData sources: CORE (RIOXX-UK Aggregator)Open Archive Toulouse Archive OuverteArticle . 2018 . Peer-reviewedData sources: Open Archive Toulouse Archive OuverteInstitut National Polytechnique de Toulouse (Theses)Article . 2018 . Peer-reviewedData sources: Institut National Polytechnique de Toulouse (Theses)MURAL - Maynooth University Research Archive LibraryArticle . 2018 . Peer-reviewedLicense: CC BY NC SAData sources: MURAL - Maynooth University Research Archive LibraryOATAO (Open Archive Toulouse Archive Ouverte - Université de Toulouse)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Spiral - Imperial College Digital RepositoryArticle . 2018Data sources: Spiral - Imperial College Digital RepositoryPublikationer från Uppsala UniversitetArticle . 2018 . Peer-reviewedData sources: Publikationer från Uppsala UniversitetDigitala Vetenskapliga Arkivet - Academic Archive On-lineArticle . 2018 . Peer-reviewedUniversité de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Nature Climate ChangeArticle . 2018Data sources: Universiteit van Amsterdam Digital Academic RepositoryAberdeen University Research Archive (AURA)Article . 2018Data sources: Bielefeld Academic Search Engine (BASE)Queensland University of Technology: QUT ePrintsArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Newcastle University Library ePrints ServiceArticleData sources: Bielefeld Academic Search Engine (BASE)The University of Queensland: UQ eSpaceArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Versailles Saint-Quentin-en-Yvelines: HAL-UVSQArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Institut national des sciences de l'Univers: HAL-INSUArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)Université de Franche-Comté (UFC): HALArticle . 2018Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Conference object , Other literature type 2022 Finland, United Kingdom, United KingdomPublisher:Springer Science and Business Media LLC Funded by:NSERC, UKRI | NERC Science @ Leeds and ..., RSF | Microorganisms, ecosystem...NSERC ,UKRI| NERC Science @ Leeds and York - Site for PhD Training in Environmental Research (SPHERES) ,RSF| Microorganisms, ecosystems and climate: factors affecting recent assemblages and reconstructions of ecosystems and environment dynamics during the HoloceneHui Zhang; Minna Väliranta; Graeme T. Swindles; Marco A. Aquino-López; Donal Mullan; Ning Tan; Matthew Amesbury; Kirill V. Babeshko; Kunshan Bao; Anatoly Bobrov; Viktor Chernyshov; Marissa A. Davies; Andrei-Cosmin Diaconu; Angelica Feurdean; Sarah A. Finkelstein; Michelle Garneau; Zhengtang Guo; Miriam C. Jones; Martin Kay; Eric S. Klein; Mariusz Lamentowicz; Gabriel Magnan; Katarzyna Marcisz; Natalia Mazei; Yuri Mazei; Richard Payne; Nicolas Pelletier; Sanna R. Piilo; Steve Pratte; Thomas Roland; Damir Saldaev; William Shotyk; Thomas G. Sim; Thomas J. Sloan; Michał Słowiński; Julie Talbot; Liam Taylor; Andrey N. Tsyganov; Sebastian Wetterich; Wei Xing; Yan Zhao;AbstractHigh-latitude peatlands are changing rapidly in response to climate change, including permafrost thaw. Here, we reconstruct hydrological conditions since the seventeenth century using testate amoeba data from 103 high-latitude peat archives. We show that 54% of the peatlands have been drying and 32% have been wetting over this period, illustrating the complex ecohydrological dynamics of high latitude peatlands and their highly uncertain responses to a warming climate.
CORE arrow_drop_down Open Research ExeterArticle . 2022License: CC BYFull-Text: https://www.ncbi.nlm.nih.gov/pubmed/36002465Data sources: Bielefeld Academic Search Engine (BASE)HELDA - Digital Repository of the University of HelsinkiArticle . 2022 . Peer-reviewedData sources: HELDA - Digital Repository of the University of HelsinkiQueen's University Belfast Research PortalArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 35 citations 35 popularity Top 10% influence Average impulse Top 1% Powered by BIP!
more_vert CORE arrow_drop_down Open Research ExeterArticle . 2022License: CC BYFull-Text: https://www.ncbi.nlm.nih.gov/pubmed/36002465Data sources: Bielefeld Academic Search Engine (BASE)HELDA - Digital Repository of the University of HelsinkiArticle . 2022 . Peer-reviewedData sources: HELDA - Digital Repository of the University of HelsinkiQueen's University Belfast Research PortalArticle . 2022Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1038/s41467-022-32711-4&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Other literature type , Journal 2018Publisher:Public Library of Science (PLoS) Funded by:NSERCNSERCAuthors: Magdalena K. Sobol; Sarah A. Finkelstein;This paper investigates suitability of supervised machine learning classification methods for classification of biomes using pollen datasets. We assign modern pollen samples from Africa and Arabia to five biome classes using a previously published African pollen dataset and a global ecosystem classification scheme. To test the applicability of traditional and machine-learning based classification models for the task of biome prediction from high dimensional modern pollen data, we train a total of eight classification models, including Linear Discriminant Analysis, Logistic Regression, Naïve Bayes, K-Nearest Neighbors, Classification Decision Tree, Random Forest, Neural Network, and Support Vector Machine. The ability of each model to predict biomes from pollen data is statistically tested on an independent test set. The Random Forest classifier outperforms other models in its ability correctly classify biomes given pollen data. Out of the eight models, the Random Forest classifier scores highest on all of the metrics used for model evaluations and is able to predict four out of five biome classes to high degree of accuracy, including arid, montane, tropical and subtropical closed and open systems, e.g. forests and savanna/grassland. The model has the potential for accurate reconstructions of past biomes and awaits application to fossil pollen sequences. The Random Forest model may be used to investigate vegetation changes on both long and short time scales, e.g. during glacial and interglacial cycles, or more recent and abrupt climatic anomalies like the African Humid Period. Such applications may contribute to a better understanding of past shifts in vegetation cover and ultimately provide valuable information on drivers of climate change.
add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
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For further information contact us at helpdesk@openaire.euAccess RoutesGreen gold 22 citations 22 popularity Top 10% influence Average impulse Top 10% Powered by BIP!
more_vert add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1371/journal.pone.0202214&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.eudescription Publicationkeyboard_double_arrow_right Article , Journal 2014 United Kingdom, United States, United Kingdom, Denmark, Finland, Netherlands, United Kingdom, United StatesPublisher:SAGE Publications Funded by:SNSF | PAGES International Proje...SNSF| PAGES International Project OfficeLoisel, J.; Yu, Z.; Beilman, D. W.; Camill, P.; Alm, J.; Amesbury, M. J.; Anderson, D.; Andersson, S.; Bochicchio, C.; Barber, K.; Belyea, L. R.; Bunbury, J.; Chambers, Frank M; Charman, D. J.; De Vleeschouwer, F.; Fia kiewicz-Kozie, B.; Finkelstein, S. A.; Ga ka, M.; Garneau, M.; Hammarlund, D.; Hinchcliffe, W.; Holmquist, J.; Hughes, P.; Jones, M. C.; Klein, E. S.; Kokfelt, U.; Korhola, A.; Kuhry, P.; Lamarre, A.; Lamentowicz, M.; Large, D.; Lavoie, M.; MacDonald, G.; Magnan, G.; Makila, M.; Mallon, G.; Mathijssen, P.; Mauquoy, D.; McCarroll, Julia; Moore, T. R.; Nichols, J.; O'Reilly, B.; Oksanen, P.; Packalen, M.; Peteet, D.; Richard, P. J.; Robinson, S.; Ronkainen, T.; Rundgren, M.; Sannel, A. B. K.; Tarnocai, C.; Thom, T.; Tuittila, E.-S.; Turetsky, M.; Valiranta, M.; van der Linden, M.; van Geel, B.; van Bellen, S.; Vitt, D.; Zhao, Y.; Zhou, W.;handle: 11245/1.430387
Here, we present results from the most comprehensive compilation of Holocene peat soil properties with associated carbon and nitrogen accumulation rates for northern peatlands. Our database consists of 268 peat cores from 215 sites located north of 45°N. It encompasses regions within which peat carbon data have only recently become available, such as the West Siberia Lowlands, the Hudson Bay Lowlands, Kamchatka in Far East Russia, and the Tibetan Plateau. For all northern peatlands, carbon content in organic matter was estimated at 42 ± 3% (standard deviation) for Sphagnum peat, 51 ± 2% for non- Sphagnum peat, and at 49 ± 2% overall. Dry bulk density averaged 0.12 ± 0.07 g/cm3, organic matter bulk density averaged 0.11 ± 0.05 g/cm3, and total carbon content in peat averaged 47 ± 6%. In general, large differences were found between Sphagnum and non- Sphagnum peat types in terms of peat properties. Time-weighted peat carbon accumulation rates averaged 23 ± 2 (standard error of mean) g C/m2/yr during the Holocene on the basis of 151 peat cores from 127 sites, with the highest rates of carbon accumulation (25–28 g C/m2/yr) recorded during the early Holocene when the climate was warmer than the present. Furthermore, we estimate the northern peatland carbon and nitrogen pools at 436 and 10 gigatons, respectively. The database is publicly available at https://peatlands.lehigh.edu .
The Holocene arrow_drop_down University of Copenhagen: ResearchArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2014Data sources: Bielefeld Academic Search Engine (BASE)Natural Resources Institute Finland: JukuriArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Bowdoin College: Bowdoin Digital CommonsArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1177/0959683614538073&type=result"></script>'); --> </script>
For further information contact us at helpdesk@openaire.euAccess RoutesGreen bronze 439 citations 439 popularity Top 0.1% influence Top 1% impulse Top 0.1% Powered by BIP!
more_vert The Holocene arrow_drop_down University of Copenhagen: ResearchArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Universiteit van Amsterdam: Digital Academic Repository (UvA DARE)Article . 2014Data sources: Bielefeld Academic Search Engine (BASE)Natural Resources Institute Finland: JukuriArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)Bowdoin College: Bowdoin Digital CommonsArticle . 2014Data sources: Bielefeld Academic Search Engine (BASE)add ClaimPlease grant OpenAIRE to access and update your ORCID works.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.This Research product is the result of merged Research products in OpenAIRE.
You have already added works in your ORCID record related to the merged Research product.All Research productsarrow_drop_down <script type="text/javascript"> <!-- document.write('<div id="oa_widget"></div>'); document.write('<script type="text/javascript" src="https://beta.openaire.eu/index.php?option=com_openaire&view=widget&format=raw&projectId=10.1177/0959683614538073&type=result"></script>'); --> </script>
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