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  Space-based Earth observation in support of the UNFCCC Paris Agreement

Hegglin, M. I., Bastos, A., Bovensmann, H., Buchwitz, M., Fawcett, D., Ghent, D., Kulk, G., Sathyendranath, S., Shepherd, T. G., Quegan, S., Röthlisberger, R., Briggs, S., Buontempo, C., Cazenave, A., Chuvieco, E., Ciais, P., Crisp, D., Engelen, R., Fadnavis, S., Herold, M., Horwath, M., Jonsson, O., Kpaka, G., Merchant, C. J., Mielke, C., Nagler, T., Paul, F., Popp, T., Quaife, T., Rayner, N. A., Robert, C., Schröder, M., Sitch, S., Venturini, S., van der Schalie, R., van der Vliet, M., Wigneron, J.-P., Woolway, R. I. (2022): Space-based Earth observation in support of the UNFCCC Paris Agreement. - Frontiers in Environmental Science, 10, 941490.
https://doi.org/10.3389/fenvs.2022.941490

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Hegglin, Michaela I.1, Author
Bastos, Ana1, Author
Bovensmann, Heinrich1, Author
Buchwitz, Michael1, Author
Fawcett, Dominic1, Author
Ghent, Darren1, Author
Kulk, Gemma1, Author
Sathyendranath, Shubha1, Author
Shepherd, Theodore G.1, Author
Quegan, Shaun1, Author
Röthlisberger, Regine1, Author
Briggs, Stephen1, Author
Buontempo, Carlo1, Author
Cazenave, Anny1, Author
Chuvieco, Emilio1, Author
Ciais, Philippe1, Author
Crisp, David1, Author
Engelen, Richard1, Author
Fadnavis, Suvarna1, Author
Herold, Martin2, Author                 
Horwath, Martin1, AuthorJonsson, Oskar1, AuthorKpaka, Gabriel1, AuthorMerchant, Christopher J.1, AuthorMielke, Christian1, AuthorNagler, Thomas1, AuthorPaul, Frank1, AuthorPopp, Thomas1, AuthorQuaife, Tristan1, AuthorRayner, Nick A.1, AuthorRobert, Colas1, AuthorSchröder, Marc1, AuthorSitch, Stephen1, AuthorVenturini, Sara1, Authorvan der Schalie, Robin1, Authorvan der Vliet, Mendy1, AuthorWigneron, Jean-Pierre1, AuthorWoolway, R. Iestyn1, Author more..
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1External Organizations, ou_persistent22              
21.4 Remote Sensing, 1.0 Geodesy, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146028              

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 Abstract: Space-based Earth observation (EO), in the form of long-term climate data records, has been crucial in the monitoring and quantification of slow changes in the climate system—from accumulating greenhouse gases (GHGs) in the atmosphere, increasing surface temperatures, and melting sea-ice, glaciers and ice sheets, to rising sea-level. In addition to documenting a changing climate, EO is needed for effective policy making, implementation and monitoring, and ultimately to measure progress and achievements towards the overarching goals of the United Nations Framework Convention on Climate Change (UNFCCC) Paris Agreement to combat climate change. The best approach for translating EO into actionable information for policymakers and other stakeholders is, however, far from clear. For example, climate change is now self-evident through increasingly intense and frequent extreme events—heatwaves, droughts, wildfires, and flooding—costing human lives and significant economic damage, even though single events do not constitute “climate”. EO can capture and visualize the impacts of such events in single images, and thus help quantify and ultimately manage them within the framework of the UNFCCC Paris Agreement, both at the national level (via the Enhanced Transparency Framework) and global level (via the Global Stocktake). We present a transdisciplinary perspective, across policy and science, and also theory and practice, that sheds light on the potential of EO to inform mitigation, including sinks and reservoirs of greenhouse gases, and adaptation, including loss and damage. Yet to be successful with this new mandate, EO science must undergo a radical overhaul: it must become more user-oriented, collaborative, and transdisciplinary; span the range from fiducial to contextual data; and embrace new technologies for data analysis (e.g., artificial intelligence). Only this will allow the creation of the knowledge base and actionable climate information needed to guide the UNFCCC Paris Agreement to a just and equitable success.

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 Dates: 2022-10-052022
 Publication Status: Finally published
 Pages: -
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 Identifiers: DOI: 10.3389/fenvs.2022.941490
GFZPOF: p4 T5 Future Landscapes
GFZPOFCCA: p4 CARF RemSens
OATYPE: Gold Open Access
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Title: Frontiers in Environmental Science
Source Genre: Journal, SCI, Scopus, oa
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Pages: - Volume / Issue: 10 Sequence Number: 941490 Start / End Page: - Identifier: CoNE: https://gfzpublic.gfz.de/cone/journals/resource/20200925
Publisher: Frontiers