Global CO2 emissions from dry inland waters share common drivers across ecosystems

Many inland waters seasonally or permanently dry up, thus exposing sediments to the atmosphere. Here the authors show that a substantial amount of CO2 is emitted from these dry sediments, increasing current inland water carbon flux estimates by 6%.

Bibliographic Details
Main Authors: P. S. Keller, N. Catalán, D. von Schiller, H.-P. Grossart, M. Koschorreck, B. Obrador, M. A. Frassl, N. Karakaya, N. Barros, J. A. Howitt, C. Mendoza-Lera, A. Pastor, G. Flaim, R. Aben, T. Riis, M. I. Arce, G. Onandia, J. R. Paranaíba, A. Linkhorst, R. del Campo, A. M. Amado, S. Cauvy-Fraunié, S. Brothers, J. Condon, R. F. Mendonça, F. Reverey, E.-I. Rõõm, T. Datry, F. Roland, A. Laas, U. Obertegger, J.-H. Park, H. Wang, S. Kosten, R. Gómez, C. Feijoó, A. Elosegi, M. M. Sánchez-Montoya, C. M. Finlayson, M. Melita, E. S. Oliveira Junior, C. C. Muniz, L. Gómez-Gener, C. Leigh, Q. Zhang, R. Marcé
Format: Article
Language:English
Published: Nature Portfolio 2020-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-020-15929-y
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author P. S. Keller
N. Catalán
D. von Schiller
H.-P. Grossart
M. Koschorreck
B. Obrador
M. A. Frassl
N. Karakaya
N. Barros
J. A. Howitt
C. Mendoza-Lera
A. Pastor
G. Flaim
R. Aben
T. Riis
M. I. Arce
G. Onandia
J. R. Paranaíba
A. Linkhorst
R. del Campo
A. M. Amado
S. Cauvy-Fraunié
S. Brothers
J. Condon
R. F. Mendonça
F. Reverey
E.-I. Rõõm
T. Datry
F. Roland
A. Laas
U. Obertegger
J.-H. Park
H. Wang
S. Kosten
R. Gómez
C. Feijoó
A. Elosegi
M. M. Sánchez-Montoya
C. M. Finlayson
M. Melita
E. S. Oliveira Junior
C. C. Muniz
L. Gómez-Gener
C. Leigh
Q. Zhang
R. Marcé
author_facet P. S. Keller
N. Catalán
D. von Schiller
H.-P. Grossart
M. Koschorreck
B. Obrador
M. A. Frassl
N. Karakaya
N. Barros
J. A. Howitt
C. Mendoza-Lera
A. Pastor
G. Flaim
R. Aben
T. Riis
M. I. Arce
G. Onandia
J. R. Paranaíba
A. Linkhorst
R. del Campo
A. M. Amado
S. Cauvy-Fraunié
S. Brothers
J. Condon
R. F. Mendonça
F. Reverey
E.-I. Rõõm
T. Datry
F. Roland
A. Laas
U. Obertegger
J.-H. Park
H. Wang
S. Kosten
R. Gómez
C. Feijoó
A. Elosegi
M. M. Sánchez-Montoya
C. M. Finlayson
M. Melita
E. S. Oliveira Junior
C. C. Muniz
L. Gómez-Gener
C. Leigh
Q. Zhang
R. Marcé
author_sort P. S. Keller
collection DOAJ
description Many inland waters seasonally or permanently dry up, thus exposing sediments to the atmosphere. Here the authors show that a substantial amount of CO2 is emitted from these dry sediments, increasing current inland water carbon flux estimates by 6%.
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spelling doaj.art-dcf29f8a80f549798ad1f60c006cb2ca2022-12-21T22:59:58ZengNature PortfolioNature Communications2041-17232020-05-011111810.1038/s41467-020-15929-yGlobal CO2 emissions from dry inland waters share common drivers across ecosystemsP. S. Keller0N. Catalán1D. von Schiller2H.-P. Grossart3M. Koschorreck4B. Obrador5M. A. Frassl6N. Karakaya7N. Barros8J. A. Howitt9C. Mendoza-Lera10A. Pastor11G. Flaim12R. Aben13T. Riis14M. I. Arce15G. Onandia16J. R. Paranaíba17A. Linkhorst18R. del Campo19A. M. Amado20S. Cauvy-Fraunié21S. Brothers22J. Condon23R. F. Mendonça24F. Reverey25E.-I. Rõõm26T. Datry27F. Roland28A. Laas29U. Obertegger30J.-H. Park31H. Wang32S. Kosten33R. Gómez34C. Feijoó35A. Elosegi36M. M. Sánchez-Montoya37C. M. Finlayson38M. Melita39E. S. Oliveira Junior40C. C. Muniz41L. Gómez-Gener42C. Leigh43Q. Zhang44R. Marcé45Department of Lake Research, Helmholtz Centre for Environmental Research—UFZCatalan Institute for Water Research (ICRA)Department of Evolutionary Biology, Ecology and Environmental Sciences, University of BarcelonaDepartment Experimental Limnology, Leibniz Institute of Freshwater Ecology and Inland Fisheries (IGB)Department of Lake Research, Helmholtz Centre for Environmental Research—UFZDepartment of Evolutionary Biology, Ecology and Environmental Sciences, University of BarcelonaDepartment of Lake Research, Helmholtz Centre for Environmental Research—UFZDepartment of Environmental Engineering, Bolu Abant Izzet Baysal UniversityBiology Department, Federal University of Juiz de ForaSchool of Agricultural and Wine Sciences, Institute for Land, Water and Society, Charles Sturt UniversityINRAE, UR RiverLy, Centre de Lyon-VilleurbanneDepartment of Bioscience, Aarhus UniversityDepartment of Sustainable Agro-ecosystems and Bioresources, Research and Innovation Centre, Fondazione Edmund MachDepartment of Aquatic Ecology and Environmental Biology, Institute for Water and Wetland Research, Radboud UniversityDepartment of Bioscience, Aarhus UniversityLeibniz-Institute of Freshwater Ecology and Inland Fisheries (IGB)Leibniz Centre for Agricultural Landscape Research (ZALF)Biology Department, Federal University of Juiz de ForaDepartment of Ecology and Genetics, Limnology, Uppsala UniversityDepartment of Ecology, University of InnsbruckBiology Department, Federal University of Juiz de ForaINRAE, UR RiverLy, Centre de Lyon-VilleurbanneDepartment of Watershed Sciences and Ecology Center, Utah State UniversityGraham Centre for Agricultural Innovation, Charles Sturt University and New South Wales Department of Primary IndustriesBiology Department, Federal University of Juiz de ForaLeibniz Centre for Agricultural Landscape Research (ZALF)Chair of Hydrobiology and Fishery, Institute of Agricultural and Environmental Sciences, Estonian University of Life SciencesINRAE, UR RiverLy, Centre de Lyon-VilleurbanneBiology Department, Federal University of Juiz de ForaChair of Hydrobiology and Fishery, Institute of Agricultural and Environmental Sciences, Estonian University of Life SciencesDepartment of Sustainable Agro-ecosystems and Bioresources, Research and Innovation Centre, Fondazione Edmund MachDepartment of Environmental Science and Engineering, Ewha Womans UniversityState Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of SciencesDepartment of Aquatic Ecology and Environmental Biology, Institute for Water and Wetland Research, Radboud UniversityDepartment of Ecology and Hydrology, University of MurciaPrograma Biogeoquímica de Ecosistemas Dulceacuícolas (BED), Instituto de Ecología y Desarrollo Sustentable (INEDES, CONICET-UNLu)Department of Plant Biology and Ecology, University of the Basque Country (UPV/EHU)Department of Ecology and Hydrology, University of MurciaInstitute for Land, Water and Society, Charles Sturt UniversityWater Research Institute—National Research Council (IRSA-CNR)Department of Aquatic Ecology and Environmental Biology, Institute for Water and Wetland Research, Radboud UniversityCenter of Etnoecology, Limnology and Biodiversity, Laboratory of Ichthyology of the Pantanal North, University of the State of Mato GrossoDepartment of Ecology and Environmental Science, Umeå UniversityAustralian Rivers Institute, Griffith UniversityNanjing Institute of Geography & Limnology (NIGLAS), Chinese Academy of SciencesCatalan Institute for Water Research (ICRA)Many inland waters seasonally or permanently dry up, thus exposing sediments to the atmosphere. Here the authors show that a substantial amount of CO2 is emitted from these dry sediments, increasing current inland water carbon flux estimates by 6%.https://doi.org/10.1038/s41467-020-15929-y
spellingShingle P. S. Keller
N. Catalán
D. von Schiller
H.-P. Grossart
M. Koschorreck
B. Obrador
M. A. Frassl
N. Karakaya
N. Barros
J. A. Howitt
C. Mendoza-Lera
A. Pastor
G. Flaim
R. Aben
T. Riis
M. I. Arce
G. Onandia
J. R. Paranaíba
A. Linkhorst
R. del Campo
A. M. Amado
S. Cauvy-Fraunié
S. Brothers
J. Condon
R. F. Mendonça
F. Reverey
E.-I. Rõõm
T. Datry
F. Roland
A. Laas
U. Obertegger
J.-H. Park
H. Wang
S. Kosten
R. Gómez
C. Feijoó
A. Elosegi
M. M. Sánchez-Montoya
C. M. Finlayson
M. Melita
E. S. Oliveira Junior
C. C. Muniz
L. Gómez-Gener
C. Leigh
Q. Zhang
R. Marcé
Global CO2 emissions from dry inland waters share common drivers across ecosystems
Nature Communications
title Global CO2 emissions from dry inland waters share common drivers across ecosystems
title_full Global CO2 emissions from dry inland waters share common drivers across ecosystems
title_fullStr Global CO2 emissions from dry inland waters share common drivers across ecosystems
title_full_unstemmed Global CO2 emissions from dry inland waters share common drivers across ecosystems
title_short Global CO2 emissions from dry inland waters share common drivers across ecosystems
title_sort global co2 emissions from dry inland waters share common drivers across ecosystems
url https://doi.org/10.1038/s41467-020-15929-y
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