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dc.contributor.authorMeinshausen, Malte
dc.contributor.authorVogel, Elisabeth
dc.contributor.authorNauels, Alexander
dc.contributor.authorLorbacher, Katja
dc.contributor.authorMeinshausen, Nicolai
dc.contributor.authorEtheridge, David M.
dc.contributor.authorFraser, Paul J.
dc.contributor.authorMontzka, Stephen A.
dc.contributor.authorRayner, Peter J.
dc.contributor.authorTrudinger, Cathy M.
dc.contributor.authorKrummel, Paul B.
dc.contributor.authorBeyerle, Urs
dc.contributor.authorCanadell, Josep G.
dc.contributor.authorDaniel, John S.
dc.contributor.authorEnting, Ian G.
dc.contributor.authorLaw, Rachel M.
dc.contributor.authorLunder, Chris R.
dc.contributor.authorReimann, Stefan
dc.contributor.authorRubino, Mauro
dc.contributor.authorVelders, Guus J. M.
dc.contributor.authorVollmer, Martin K.
dc.contributor.authorWang, Ray H. J.
dc.contributor.authorWeiss, Ray
dc.contributor.authorO'Doherty, Simon
dc.contributor.authorPrinn, Ronald G
dc.date.accessioned2018-02-27T20:01:17Z
dc.date.available2018-02-27T20:01:17Z
dc.date.issued2017-05
dc.date.submitted2017-02
dc.identifier.issn1991-9603
dc.identifier.issn1991-959X
dc.identifier.urihttp://hdl.handle.net/1721.1/113899
dc.description.abstractAtmospheric greenhouse gas (GHG) concentrations are at unprecedented, record-high levels compared to the last 800 000 years. Those elevated GHG concentrations warm the planet and - partially offset by net cooling effects by aerosols - are largely responsible for the observed warming over the past 150 years. An accurate representation of GHG concentrations is hence important to understand and model recent climate change. So far, community efforts to create composite datasets of GHG concentrations with seasonal and latitudinal information have focused on marine boundary layer conditions and recent trends since the 1980s. Here, we provide consolidated datasets of historical atmospheric concentrations (mole fractions) of 43 GHGs to be used in the Climate Model Intercomparison Project - Phase 6 (CMIP6) experiments. The presented datasets are based on AGAGE and NOAA networks, firn and ice core data, and archived air data, and a large set of published studies. In contrast to previous intercomparisons, the new datasets are latitudinally resolved and include seasonality. We focus on the period 1850-2014 for historical CMIP6 runs, but data are also provided for the last 2000 years. We provide consolidated datasets in various spatiotemporal resolutions for carbon dioxide (CO₂), methane (CH₄) and nitrous oxide (N₂O), as well as 40 other GHGs, namely 17 ozone-depleting substances, 11 hydrofluorocarbons (HFCs), 9 perfluorocarbons (PFCs), sulfur hexafluoride (SF₆), nitrogen trifluoride (NF₃) and sulfuryl fluoride (SO₂F₂). In addition, we provide three equivalence species that aggregate concentrations of GHGs other than CO₂, CH₄ and N₂O, weighted by their radiative forcing efficiencies. For the year 1850, which is used for pre-industrial control runs, we estimate annual global-mean surface concentrations of CO₂ at 284.3 ppm, CH₄ at 808.2 ppb and N₂O at 273.0 ppb. The data are available at https://esgf-node.llnl.gov/search/input4mips/ and www.climatecollege.unimelb.edu.au/cmip6. While the minimum CMIP6 recommendation is to use the global- and annual-mean time series, modelling groups can also choose our monthly and latitudinally resolved concentrations, which imply a stronger radiative forcing in the Northern Hemisphere winter (due to the latitudinal gradient and seasonality).en_US
dc.publisherCopernicus GmbHen_US
dc.relation.isversionofhttp://dx.doi.org/10.5194/GMD-10-2057-2017en_US
dc.rightsAttribution 3.0 Unported (CC BY 3.0)en_US
dc.rights.urihttps://creativecommons.org/licenses/by/3.0/en_US
dc.sourceCopernicus Publicationsen_US
dc.titleHistorical greenhouse gas concentrations for climate modelling (CMIP6)en_US
dc.typeArticleen_US
dc.identifier.citationMeinshausen, Malte et al. “Historical Greenhouse Gas Concentrations for Climate Modelling (CMIP6).” Geoscientific Model Development 10, 5 (May 2017): 2057–2116 © Author(s) 2017en_US
dc.contributor.departmentMassachusetts Institute of Technology. Department of Earth, Atmospheric, and Planetary Sciencesen_US
dc.contributor.mitauthorPrinn, Ronald G
dc.relation.journalGeoscientific Model Developmenten_US
dc.eprint.versionFinal published versionen_US
dc.type.urihttp://purl.org/eprint/type/JournalArticleen_US
eprint.statushttp://purl.org/eprint/status/PeerRevieweden_US
dc.date.updated2018-02-23T14:04:05Z
dspace.orderedauthorsMeinshausen, Malte; Vogel, Elisabeth; Nauels, Alexander; Lorbacher, Katja; Meinshausen, Nicolai; Etheridge, David M.; Fraser, Paul J.; Montzka, Stephen A.; Rayner, Peter J.; Trudinger, Cathy M.; Krummel, Paul B.; Beyerle, Urs; Canadell, Josep G.; Daniel, John S.; Enting, Ian G.; Law, Rachel M.; Lunder, Chris R.; O'Doherty, Simon; Prinn, Ron G.; Reimann, Stefan; Rubino, Mauro; Velders, Guus J. M.; Vollmer, Martin K.; Wang, Ray H. J.; Weiss, Rayen_US
dspace.embargo.termsNen_US
dc.identifier.orcidhttps://orcid.org/0000-0001-5925-3801
mit.licensePUBLISHER_CCen_US


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