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The consolidated European synthesis of CH4 and N2O emissions for the European Union and United Kingdom: 1990-2017
- Publication Year :
- 2021
-
Abstract
- Reliable quantification of the sources and sinks of greenhouse gases, together with trends and uncertainties, is essential to monitoring the progress in mitigating anthropogenic emissions under the Paris Agreement. This study provides a consolidated synthesis of CH4 and N2O emissions with consistently derived state-of-the-art bottom-up (BU) and top-down (TD) data sources for the European Union and UK (EU27 C UK). We integrate recent emission inventory data, ecosystem process-based model results and inverse modeling estimates over the period 1990-2017. BU and TD products are compared with European national greenhouse gas inventories (NGHGIs) reported to the UN climate convention UNFCCC secretariat in 2019. For uncertainties, we used for NGHGIs the standard deviation obtained by varying parameters of inventory calculations, reported by the member states (MSs) following the recommendations of the IPCC Guidelines. For atmospheric inversion models (TD) or other inventory datasets (BU), we defined uncertainties from the spread between different model estimates or model-specific uncertainties when reported. In comparing NGHGIs with other approaches, a key source of bias is the activities included, e.g., anthropogenic versus anthropogenic plus natural fluxes. In inversions, the separation between anthropogenic and natural emissions is sensitive to the geospatial prior distribution of emissions. Over the 2011-2015 period, which is the common denominator of data availability between all sources, the anthropogenic BU approaches are directly comparable, reporting mean emissions of 20.8 TgCH(4) yr (-1) (EDGAR v5.0) and 19.0 TgCH(4) yr(-1) (GAINS), consistent with the NGHGI estimates of 18.9 +/- 1.7 TgCH(4) yr(-1). The estimates of TD total inversions give higher emission estimates, as they also include natural emissions. Over the same period regional TD inversions with higher-resolution atmospheric transport models give a mean emission of 28.8 TgCH(4) yr(-1). Coarser-resolution<br />Funding Agencies|European Research Council Synergy project [SyG-2013-610028 IMBALANCE-P]; ANR CLAND Convergence InstituteFrench National Research Agency (ANR); Environment Research and Technology Development Fund of the Environmental Restoration and Conservation Agency of Japan [JPMEERF20172001, JPMEERF20182002]; European Research Council (ERC) under the European UnionEuropean Research Council (ERC) [725546]; EU Horizon 2020 program (FPCUP) [809596]; Academy of Finland (SOMPA)Academy of Finland [312932]; Norwegian Research Council (ICOS-Norway)Research Council of Norway [245927]; Horizon2020 CHE project [776186]
Details
- Database :
- OAIster
- Notes :
- application/pdf, English
- Publication Type :
- Electronic Resource
- Accession number :
- edsoai.on1280477677
- Document Type :
- Electronic Resource
- Full Text :
- https://doi.org/10.5194.essd-13-2307-2021